1.Research progress of new isothermal amplification technology in rapid diagnosis of Plasmodium and other parasites
YANG Jun-jie ; WU Tian ; LIU Cheng-long ; LIAN Meng-ze ; ZHANG Yi-long
China Tropical Medicine 2022;22(09):884-
Abstract: At present, nucleic acid detection technology based on the PCR principle is commonly used to detect malaria parasites, the existing Plasmodium detection methods mainly include microscopy, antigen immunoassay, and nucleic acid detection,but due to the long detection time, high personnel and equipment requirements, and other shortcomings, its popularization, and application at the grassroots level are limited. What challenges previous Plasmodium detection methods are the lack of experienced professionals and advanced equipment at the grassroots as well as the requirement of rapid detection of large samples under extreme conditions. The isothermal amplification technology developed in recent years has potential application prospects due to its simplicity, rapidity, high sensitivity, and high specificity. This article attempts to review the principles, characteristics, and prospects of various isothermal amplification technologies, and on this basis, focuses on the introduction of recombinase polymerase amplification (RPA) and recombinase⁃aided isothermal amplification (RAA) assay technologies and proposes the use of such recombinant enzyme amplification technologies to achieve rapid and accurate diagnosis of common Plasmodium species possibility and imagination.
2.HB-1, an acute myeloid leukemic cell line with the capability of infiltrating into the brain in CBA/N mice.
Hui-Jie JIANG ; Hu-Shan SUN ; Xu-Dong WANG ; Chang-Liu WANG ; Ze-Long LIU ; Hiroyuki GONDA ; Kenkichi SUGIMOTO
Acta Physiologica Sinica 2006;58(4):377-383
An acute myeloid leukemic HB-1 cell line was cloned and established from the spleen cells of irradiated CBA/N mice. Acute myeloma leukemia-like syndrome would be induced in normal CBA/N mice after intravenous injection of HB-1 cells, and the death of mouse happened within about two weeks. In general, leukemic cells transplanted into the mice would infiltrate into the hematopoietic organs, lungs, kidneys and liver. An interesting observation in our study was that HB-1 cells were present not only in the lung, kidney, and liver but also in the cerebrum and cerebellum. It was beyond our expectation that the leukemic cells could go through the blood-brain barrier in most circumstances. On the basis of the observation, we expect that HB-1 cells could be used as a very useful model to elucidate the mechanism of infiltrating the blood-brain barrier for certain type of cells.
Animals
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Blood-Brain Barrier
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physiopathology
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Brain
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pathology
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Cell Line, Tumor
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Central Nervous System Neoplasms
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Leukemia, Experimental
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pathology
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Leukemia, Myeloid, Acute
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pathology
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Mice
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Mice, Inbred CBA
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Neoplasm Invasiveness
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Neoplasm Transplantation
3.Gene typing of Legionella pneumophila serogroup 1 in Sichuan Province, China
zi Lin ZENG ; yu Hong LIAO ; Teng QI ; Yi LIU ; li Li LIU ; ze Long LUO
Chinese Journal of Zoonoses 2017;33(9):784-788
The aim of the research is to investigate the genetic characteristics of Legionella pneumophila serogroup1 (LP1)in Sichuan Province.The sequence-based typing (SBT) and multiple-locus VNTR analysis (MLVA) were used to describe the genetic polymorphism of 42 strains which were isolated from 1989-2016 in Sichuan Province,China.According to the reference,PCR was used to detect the 8-VNTR loci and 7 housekeeping genes respectively.The VNTR results were determined by using capillary electrophoresis,and the SBT results were sequenced and compared with the database of EWGLI.Results showed that totally 42 stains were divided into 8 MLVA types with the advantage types were M08 (47.6 %) and M07 (23.8 %).Twelve ST types were obtained with 3 main clonal complex and 2 singleton,including 2 novel ST types,among those,ST1 was the predominant type,accounting for 52.3 %,following by ST630 (14.2 %).In conclusion,our results demonstrated MLVA and SBT were both applied to the research for molecular epidemiological investigation of LP1 and showed the high genetic polymorphism and the regional specificity.The results also suggest that the isolates are a potential threat to the public,effective control and prevention strategies are urgently needed.
4.Enhancing effect of porcine coagulation factor VIII A1 and A3 domains on secretion of post-translationally spliced human/porcine hybrid coagulation factor VIII.
Fu-Xiang ZHU ; Ze-Long LIU ; Hui-Ge QU ; Xiao-Yan CHI
Acta Physiologica Sinica 2010;62(4):373-381
Low levels of coagulation factor VIII (fVIII) protein expression caused by its inefficient secretion and the over-sized fVIII gene affect the transgene-based gene therapy for hemophilia A adversely. Our previous study demonstrated that intein-mediated protein trans-splicing for delivery of the fVIII gene with a dual-vector system could improve secretion of post-translationally spliced fVIII by light chain in cis. In this study, a human/porcine hybrid fVIII (HP-fVIII) containing replaced A1 and A3 domains of porcine fVIII was investigated for secretion and activity of the spliced HP-fVIII after intein-based dual-vector delivery of the HP-fVIII gene. A pair of expression plasmids comprising intein-fused HP-fVIII heavy and light chains were constructed and transiently co-transfected into COS-7 cells. The spliced HP-fVIII and bio-activity in culture media were quantitatively analyzed by ELISA and Coatest method respectively. The intracellular splicing of HP-fVIII was detected by Western blotting. The results showed that in the culture supernatant of cells co-transfected with HP-fVIII, the amount and activity of spliced HP-fVIII were significantly higher than those of spliced hfVIII secreted from the cells co-transfected with human fVIII [(184+/-34 ng/mL) vs (48+/-12) ng/mL, P<0.01; (1.18+/-0.22) IU/mL vs (0.31+/-0.10) IU/mL, P<0.01], demonstrating the dramatically enhancing effect of porcine A1 and A3 domains on the secretion of intein-spliced HP-fVIII. The spliced HP-fVIII protein and its activity were also detected in the supernatant from combined cells separately transfected with intein-fused HP-fVIII heavy and light chain genes, indicating that the intein-mediated HP-fVIII splicing was independent of cellular mechanism and could occur outside the cell after the secretion of precursor proteins. Additionally, an intracellularly spliced HP-fVIII band was found with a molecular weight similar to human fVIII protein, confirming the HP-fVIII splicing. These results provided experimental basis for ongoing study using intein-based dual adeno-associated virus (AAV) vector to transfer HP-fVIII gene in animal models.
Animals
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COS Cells
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Cercopithecus aethiops
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Dependovirus
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genetics
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metabolism
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Factor VIIIa
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biosynthesis
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genetics
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Genetic Vectors
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Humans
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Inteins
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Protein Splicing
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Recombinant Fusion Proteins
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genetics
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Swine
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Trans-Splicing
5.Protein trans-spliced chimeric human/porcine BDD-FVIII with augmented secretion.
Fu-xiang ZHU ; Shu-de YANG ; Ze-long LIU ; Jing MIAO ; Hui-ge QU ; Xiao-yan CHI
Acta Pharmaceutica Sinica 2010;45(10):1232-1238
This study is to construct a chimeric human/porcine BDD-FVIII (BDD-hpFVIII) containing the substituted porcine A1 and A3 domains which proved to have a pro-secretory function. By exploring Ssp DnaB intein's protein trans-splicing a dual-vector was adopted to co-transfer the chimeric BDD-hpFVIII gene into cultured COS-7 cell to observe the intracellular BDD-hpFVIII splicing by Western blotting and secretion of spliced chimeric BDD-hp FVIII protein and bio-activity using ELISA and Coatest assay, respectively. The dada showed that an obvious protein band of spliced BDD-hpFVIII can be seen, and the amount of spliced BDD-hpFVIII protein and bio-activity in the supernatant were up to (340 +/- 64) ng x mL(-1) and (2.52 +/- 0.32) u x mL(-1) secreted by co-transfected cells which were significantly higher than that of dual-vector-mediated human BDD-FVIII gene co-transfection cells [(93 +/- 22) ng x mL(-1), (0.72 +/- 0.13) u x mL(-1)]. Furthermore, a spliced BDD-hpFVIII protein and activity can be detected in supernatant from combined cells separately transfected with intein-fused BDD-hpFVIII heavy and light chain genes indicating that intein-mediated BDD-hpFVIII splicing occurs independently of cellular mechanism. It provided evidence for enhancing FVIII secretion in the research of animal models using intein-based dual vector for the delivery of the BDD-hpFVIII gene.
Animals
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COS Cells
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Cercopithecus aethiops
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Factor VIII
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genetics
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metabolism
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secretion
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Genetic Vectors
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Humans
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Inteins
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Peptide Fragments
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genetics
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metabolism
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secretion
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Plasmids
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Protein Splicing
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Swine
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Trans-Splicing
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Transfection
6.vWF improves secretion and activity of intein spliced BDD-FVIII.
Fu-Xiang ZHU ; Shu-De YANG ; Ze-Long LIU ; Jing MIAO ; Hui-Ge QU ; Xiao-Yan CHI
Acta Pharmaceutica Sinica 2010;45(5):595-600
As synthesized by vascular endothelial cells and megakaryocytes, the von Willebrand factor (vWF) plays an important hemostatic role in the binding to and stabilizing blood coagulation factor VIII (FVIII) and preventing its enzymatic degradation. Our recent work demonstrated intein can efficiently ligate BDD-FVIII (B-domaim deleted FVIII) posttranslationally by protein trans-splicing after transfer of split BDD-FVIII gene by a dual-vector system. In this study we investigated the effect of vWF on secretion and activity of intein-ligated BDD-FVIII. We observed the levels of full-length BDD-FVIII antigen secreted into culture supernatant by ELISA and their activity by Coatest assay after transfection of cultured 293 cells with intein-fused BDD-FVIII heavy- and light-chain genes simultaneously with the vWF gene co-transfected. The data showed that the amount of full-length BDD-FVIII protein and their bioactivity in vWF gene co-transfected cell supernatant were 235 +/- 21 ng x mL(-1) and 1.98 +/- 0.2 u x mL(-1), respectively, greater than that of non-vWF co-transfected cell (110 +/- 18) ng x mL(-1) and 1.10 +/- 0.15 u x nL(-1)) or just BDD-FVIII gene transfected control cell (131 +/- 25 ng x mL(-1) and 1.22 +/- 0.18 u x mL(-1)) indicating the benefit of vWF gene co-transfection in the secretion and activity of intein-spliced BDD-FVIII protein. It provided evidence that vWF gene co-transfer may be useful to improve efficacy of gene therapy for hemophilia A in protein splicing-based split FVIII gene transfer.
Factor VIII
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genetics
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metabolism
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secretion
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Genetic Therapy
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Genetic Vectors
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HEK293 Cells
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Hemophilia A
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therapy
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Humans
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Inteins
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Peptide Fragments
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genetics
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metabolism
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secretion
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Plasmids
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Protein Splicing
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Trans-Splicing
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Transfection
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von Willebrand Factor
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genetics
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metabolism
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physiology
7.Glycosylation and L303e/F309S mutations improve intein-mediated splicing of the split coagulation factor VIII.
Fu-Xiang ZHU ; Ze-Long LIU ; Jing MIAO ; Hui-Ge QU ; Xiao-Yan CHI
Acta Pharmaceutica Sinica 2010;45(11):1361-1366
We recently demonstrated that an intein-mediated protein splicing can be used to transfer B-domain-deleted FVIII (BDD-FVIII) gene by a dual-vector. In this study, we observed the effect of a variant heavy chain with six potential glycosylation sites of B domain and L303E/F309S mutations in its A1 domain, which were proven to be beneficial for FVIII secretion, on secretion of spliced BDD-FVIII. By transient co-transfection of cultured 293 cells with intein-fused variant heavy chain (DMN6HCIntN) and light chain (IntCLC) genes, the culture supernatant was analyzed quantitatively by ELISA for secreted spliced BDD-FVIII antigen and by a chromogenic assay for bioactivity. The data showed that the amount of spliced BDD-FVIII protein and coagulation activity in culture supernatant from DMN6HCIntN plus IntCLC co-transfected cells were up to (149 +/- 23) ng x mL(-1) and (1.12 +/- 0.14) u x mL(-1) respectively greater than that of intein-fused wild type heavy (HCIntN) and light chain (IntCLC) co-transfected cells [(99 +/- 14) ng x mL(-1) and (0.77 +/- 0.13) u x mL(-1)] indicating that the variant heavy chain is able to improve the secretion of spliced BDD-FVIII and activity. A cellular mechanism-independent BDD-FVIII splicing was also observed. It provided evidence for ongoing animal experiment using intein-mediated dual-AAV vector technology for delivery of the BDD-FVIII genes.
Factor VIII
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genetics
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metabolism
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secretion
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Glycosylation
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HEK293 Cells
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Humans
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Inteins
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Mutation
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Peptide Fragments
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genetics
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metabolism
;
secretion
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Protein Splicing
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Trans-Splicing
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Transfection
8.Post-translational ligation and function of dual-vector transferred split CFTR gene.
Fu-Xiang ZHU ; Ze-Long LIU ; Hui-Ge QU ; Xiao-Yan CHI
Acta Pharmaceutica Sinica 2010;45(1):60-65
The mutation of cystic fibrosis transmembrane conductance regulator (CFTR) gene leads to an autosomal recessive genetic disorder cystic fibrosis (CF). The gene therapy for CF using adeno-associated virus (AAV) vectors delivering CFTR gene is restricted by the contents limitation of AAV vectors. In this study the split CFTR genes severed at its regulatory domain were delivered by a dual-vector system with an intein-mediated protein trans-splicing as a technique to investigate the post-translational ligation of CFTR half proteins and its function as a chloride ion channel. A pair of eukaryotic expression vectors was constructed by breaking the human CFTR cDNA before Ser712 codon and fusing with Ssp DnaB intein coding sequences. After co-transfection into baby hamster kidney (BHK) cells followed by transient expression, patch clamps were carried out to record the chloride current of whole-cell and the activity of a single channel, and the ligation of two halves of CFTR was observed by Western blotting. The results showed that the intein-fused half genes co-transfected cells displayed a high whole cell chloride current and activity of a single channel indicating the functional recovery of chloride channel, and an intact CFTR protein band was figured out by CFTR-specific antibodies indicating that intein can efficiently ligate the separately expressed half CFTR proteins. The data demonstrated that protein splicing strategy could be used as a strategy in delivering CFTR gene by two vectors, encouraging our ongoing research program on dual AAV vector system based gene transfer in gene therapy for cystic fibrosis.
Animals
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Cells, Cultured
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Chlorides
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metabolism
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Codon
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genetics
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Cricetinae
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Cystic Fibrosis
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therapy
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Cystic Fibrosis Transmembrane Conductance Regulator
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genetics
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metabolism
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DNA, Complementary
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genetics
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Dependovirus
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genetics
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Genetic Therapy
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Genetic Vectors
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Humans
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Inteins
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physiology
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Kidney
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cytology
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Protein Processing, Post-Translational
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Recombinant Proteins
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genetics
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metabolism
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Trans-Splicing
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Transfection
9.Trans-splicing of Cys mutated coagulation factor VIII.
Fu-Xiang ZHU ; Ze-Long LIU ; Jing MIAO ; Hui-Ge QU ; Xiao-Yan CHI
Acta Pharmaceutica Sinica 2012;47(6):734-738
To investigate the improving effect of inter-chain disulfide formation on protein trans-splicing, we introduce a Cys point mutation at Tyr(664) in heavy chain and at Thr(1826) in light chain of B-domain-deleted FVIII (BDD-FVIII). By co-transfection of COS-7 cell with the two Cys mutated chain genes, the intracellular protein splicing, inter-chain disulfide formation, secreted BDD-FVIII and bioactivity in culture supernatant were observed. The data showed that a strengthened spliced BDD-FVIII with an inter-chain disulfide detected by Western blotting and an elevated secretion of spliced BDD-FVIII (128 +/- 24 ng mL(-1)) compared to control (89 +/- 15 ng mL(-1)), assayed by a sandwich ELISA. A Coatest was performed to assay the secretion of bioactivity in culture supernatant and shown a much higher value (0.94 +/- 0.08 u mL(-1)) compared to that of control (0.62 +/- 0.15 u mL(-1)). It suggests that inter-chain disulfide formation could improve protein trans-splicing based dual-vector delivery of BDD-FVIII gene providing experimental evidence for ongoing in vivo study.
Animals
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COS Cells
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Cercopithecus aethiops
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Cysteine
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genetics
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metabolism
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Disulfides
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metabolism
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Factor VIII
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genetics
;
metabolism
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Gene Transfer Techniques
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Genetic Vectors
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Mutation
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Peptide Fragments
;
genetics
;
metabolism
;
Protein Splicing
;
Transfection
10.Intein-mediated F309SfVIII ligation with enhanced secretion of its heavy chain..
Fu-Xiang ZHU ; Ze-Long LIU ; Hui-Ge QU ; Xiao-Yan CHI
Acta Physiologica Sinica 2009;61(6):526-532
Coagulation factor VIII (fVIII) is a secretion protein and plays a crucial role in the coagulation cascade. Hemophilia A resulted from deficiency of fVIII is the most common X-linked recessive bleeding disorder. Gene therapy is recognized as an attractive strategy for the eventual cure of this disease. However, the gene therapy is hampered by the big size of fVIII gene when using the most promising gene vectors, adeno-associated virus (AAV) vectors. In this study we explored the intein-mediated protein trans-splicing to deliver a Phe(309)-->Ser mutant full-length fVIII (F309SfVIII) gene by using a dual-vector system. An intein is a protein sequence embedded within a precursor protein and can excise itself through protein splicing. The F309SfVIII is proven to be beneficial to its secretion. The F309SfVIII gene was broken into heavy and light chains before Ser(1239) in B domain and fused with the coding sequences of Ssp DnaB intein respectively to construct a pair of plasmid vectors by inserting them into the pcDNA3.1 vectors. Forty-eight hours after co- or separate transfection of 293 cells, the co-transfected cell lysate showed an obvious ligated F309SfVIII protein band by Western blot with a polyclonal antibody against fVIII. The amounts of secreted F309SfVIII protein in culture supernatants and their bioactivities were (71+/-9) ng/mL and (0.38+/-0.09) IU/mL determined by ELISA and Coatest assay respectively. The supernatant from combined cells with separate transfections also displayed lower levels of F309SfVIII antigen and fVIII activity [(25+/-6) ng/mL and (0.12+/-0.05) IU/mL], indicating the F309SfVIII could be formed by splicing both before and after secretion. The content of F309SfVIII heavy chain protein from co-transfected cell supernatant was higher than that of intein-fused heavy chain transfection alone [(135+/-10) ng/mL vs (37+/-7) ng/mL, P<0.01)]. These data demonstrated that intein could be used as a technical strategy in a dual-vector system delivering F309SfVIII gene with improved secretion of fVIII providing an alternative approach to circumvent the packaging limitation of AAV for F309SfVIII gene transfer, which encourages our continuing study in hemophilia A gene therapy in vivo.
Cell Line
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Dependovirus
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Factor VIII
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metabolism
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Genetic Vectors
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Humans
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Inteins
;
Protein Splicing