1.Analyzing the evolution of insect TMED gene and the expression pattern of silkworm TMED gene.
Chunyang WANG ; Yu GUO ; Haiyin LI ; Ping CHEN
Chinese Journal of Biotechnology 2023;39(12):4996-5013
Transmembrane emp24 domain (TMED) gene is closely related to immune response, signal transduction, growth and disease development in mammals. However, only the Drosophila TMED gene has been reported on insects. We identified the TMED family genes of silkworm, Tribolium castaneum, tobacco moth and Italian bee from their genomes, and found that the TMED family gene composition patterns of one α-class, one β-class, one δ-class and several γ-classes arose in the common ancestor of pre-divergent Hymenoptera insects, while the composition of Drosophila TMED family members has evolved in a unique pattern. Insect TMED family γ-class genes have evolved rapidly, diverging into three separate subclasses, TMED6-like, TMED5-like and TMED3-like. The TMED5-like gene was lost in Hymenoptera, duplicated in the ancestors of Lepidoptera and duplicated in Drosophila. Insect TMED protein not only has typical structural characteristics of TMED, but also has obvious signal peptide. There are seven TMED genes in silkworm, distributed in six chromosomes. One of seven is single exon and others are multi-exons. The complete open reading frame (ORF) sequences of seven TMED genes of silkworm were cloned from larval tissues and registered in GenBank database. BmTMED1, BmTMED2 and BmTMED6 were expressed in all stages and tissues of the silkworm, and all genes were expressed in the 4th and 5th instar and silk gland of the silkworm. The present study revealed the composition pattern of TMED family members, their γ class differentiation and their evolutionary history, providing a basis for further studies on TMED genes in silkworm and other insects.
Animals
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Bombyx/metabolism*
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Genes, Insect/genetics*
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Moths/metabolism*
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Insecta/metabolism*
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Drosophila
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Insect Proteins/metabolism*
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Phylogeny
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Mammals/genetics*
2.Relevance analysis of amino acid contents in cultivated Cordyceps and cultivation materials.
Xiaoli WU ; Fei LIU ; Wei ZENG ; Guoyue ZHONG ; Yongqin TU ; Shijiang CHEN
China Journal of Chinese Materia Medica 2010;35(2):142-144
OBJECTIVETo clarify the relevance of amino acid content in cultivated Cordyceps and cultivation materials.
METHODThe content of amino acid was determined with L-8800 amino acid analyzer, and the relevance of amino acid content was analyzed with SPSS.
RESULT AND CONCLUSIONExcept mycelium of the C. sinensis or the blood-lymph of the larva, the cultivated Cordyceps and the main relevant cultivation materials had detected to contain all kinds of amino acids. Except among the mycelium, the blood-lymph of the larva, the part of the larva or of the stroma of cultivated Cordyceps, there was distinct relevance of amino acid contents in cultivated Cordyceps and the cultivation materials (P<0.01).
Amino Acids ; analysis ; metabolism ; Animals ; Cordyceps ; chemistry ; metabolism ; Larva ; chemistry ; microbiology ; Moths ; chemistry ; microbiology ; Mycelium ; chemistry ; metabolism
3.Prokaryotic expression, polyclonal antibody preparation, spatio-temporal expression profile and functional analysis of c-Myc of Helicoverpa armigera (Lepidoptera: Noctuidae).
Qian SUO ; Xiaoyan SUN ; Ying ZHANG ; Yujing WANG ; Kaiyu LIU ; Hong YANG ; Huazhu HONG ; Jianxin PENG ; Rong PENG
Chinese Journal of Biotechnology 2023;39(7):2730-2742
c-Myc protein encoded by c-Myc (cellular-myelocytomatosis viral oncogene) gene regulates the related gene expression through the Wnt/β-catenin signaling pathway, and has received extensive attention in recent years. The purpose of this study was to express Helicoverpa armigera c-Myc gene (Ha-c-Myc) by using prokaryotic expression system, prepare the polyclonal antibody, examine the spatio-temporal expression profile of Ha-c-Myc, and investigate the possible function of Ha-c-Myc in regulating H. armigera sterol carrier protein-2 (SCP-2) gene expression. The Ha-c-Myc gene was amplified by PCR and cloned into a prokaryotic expression plasmid pET-32a(+). The recombinant plasmid pET-32a-Ha-c-Myc was transformed into Escherichia coli BL21. IPTG was used to induce the expression of the recombinant protein. Protein was purified by Ni2+-NTA column and used to immunize New Zealand rabbits for preparing the polyclonal antibody. The Ha-c-Myc expression levels in different developmental stages (egg, larva, prepupa, pupa, and adult) of H. armigera and different tissues (midgut, fat body, head, and epidermis) of the prepupa were determined by real-time quantitative reverse transcription PCR (qRT-PCR). Ha-c-Myc siRNA was synthesized and transfected into H. armigera Ha cells. The relative mRNA levels of Ha-c-Myc and HaSCP-2 in Ha cells were detected by qRT-PCR. Results showed that the pET-32a-Ha-c-Myc recombinant plasmid was constructed. The soluble Ha-c-Myc protein of about 65 kDa was expressed in E. coli. The polyclonal antibody was prepared. Western blotting analysis suggested that the antibody had high specificity. Enzyme linked immunosorbent assay (ELISA) showed that the titer of the antibody was high. Ha-c-Myc gene expressed at all developmental stages, with high levels in the early and late instars of larva, and the prepupal stage. Tissue expression profiles revealed that Ha-c-Myc expressed in various tissues of prepupa, with high expression level in the midgut, but low levels in the epidermis and fat body. RNAi results showed that the knockdown of Ha-c-Myc expression significantly affected transcription of HaSCP-2, leading to a 50% reduction in HaSCP-2 mRNA expression level. In conclusion, the Ha-c-Myc was expressed through a prokaryotic expression system, and the polyclonal anti-Ha-c-Myc antibody was obtained. Ha-c-Myc may promote the expression of HaSCP-2 and play an important role in the lipid metabolism of H. armigera. These results may facilitate further study on the potential role and function mechanism of Ha-c-Myc in H. armigera and provide experimental data for exploring new targets of green pesticides.
Animals
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Rabbits
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Escherichia coli/metabolism*
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Enzyme-Linked Immunosorbent Assay
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Moths/genetics*
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Blotting, Western
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Larva/genetics*
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Isoantibodies/metabolism*
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Antibody Specificity
4.Effect of total ginsenoside on content of protein and activity of digestive enzyme of Mythimna separata larvae.
Shi-Qiang TAN ; Ai-Hua ZHANG ; Yong-Hua XU ; Lian-Xue ZHANG
China Journal of Chinese Materia Medica 2013;38(11):1692-1696
OBJECTIVEThis study aims to reveal the effect of total ginsenoside on the protein content and digestive enzyme activities of 4th-instar Mythimna separata larvae, including alpha-amylase and cellulose, and explore the ecological function of total ginsenoside.
METHODWhile simulating natural growing condition indoors, 4th-instar M. separata larvae were fed by poison leaf disk method. The protein content was tested by Lowry Protein Assay Kit method, the activity of alpha-amylase was measured by dinitrosalicylic acid test, and the activity of cellulase was determined by the filter paper method.
RESULTThe total ginsenoside could reduce the content of protein of 4th-instar M. separata larvae significantly, and the activity of digestive enzyme, including alpha-amylase and cellulase. The protein content, alpha-amylase and cellulase activity of treatments were obviously lower than that of the control. Inhibition ratio of alpha-amylase and cellulase activity was positively correlated with total ginsenoside concentration: i. e. 20 g x L(-1) > 10 g x L(-1) > 5 g x L(-1).
CONCLUSIONThe results suggest that the inhibition effect of total ginsenoside on protein content and digestive enzymes may be one of the causes to antifeedant and dysplasia of M. separata larvae.
Animals ; Digestion ; Ginsenosides ; pharmacology ; Insect Proteins ; metabolism ; Larva ; drug effects ; enzymology ; growth & development ; Moths ; drug effects ; enzymology ; growth & development
5.Preparation and purification of Cry1Ah protein candidate reference material.
Lin GUO ; Lili GENG ; Xiaoxiao SUN ; Meiling WANG ; Changlong SHU ; Jie ZHANG
Chinese Journal of Biotechnology 2019;35(8):1511-1519
With the rapid development of transgenic technology, the safety of genetically modified products has received extensive attention. Certified reference materials for the detection of genetically modified organisms play important roles in ensuring comparability and traceability of the qualitative and quantitative detection of genetically modified products. However, the development of protein reference materials is relatively slow, and one of the difficulties is the preparation of protein candidates with high purity. The cry1Ah1 gene of Bacillus thuringiensis has been used for the development of transgenic insect-resistant crops because of its excellent insecticidal activity against lepidopteran pests such as Asian corn borer, and has obtained transgenic lines with good insect resistance traits. In order to develop Cry1Ah protein certified reference material, it is urgent to establish a preparation and purification system. In this study, a system for preparing Cry1Ah protein by Bt expression system was optimized, and a high-purity Cry1Ah protein (size exclusion chromatography purity: 99.6%) was obtained by ion-exchange chromatography and size exclusion chromatography stepwise purification. The results of biological activity assay showed that there was no significant difference in the insecticidal activity of purified Cry1Ah protein and protoxin against diamondback moths (Plutella xylostella). Finally, the amino acid sequence of the activated Cry1Ah protein was determined using Edman degradation and mass spectrometry. In summary, the obtained Cry1Ah pure protein can be used for the development of protein reference materials.
Animals
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Bacillus thuringiensis
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Bacterial Proteins
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Cryptochromes
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metabolism
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Endotoxins
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Hemolysin Proteins
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Moths
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Pest Control, Biological
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Plants, Genetically Modified
6.Functional analysis of the late expression factor genes of plutella xylostella granulovirus.
Chinese Journal of Virology 2012;28(5):560-566
Plutella xylostella granulovirus (PlxyGV) contains homologs of 15 Autographa californica MNPV (AcMNPV) late expression factor (lef) genes. The prospective products of 14 PlxyGV lef genes (ie-0 is not included) share 13%-53% amino acid similarity with their corresponding homologs of AcMNPV, among which LEF-9, LEF-8 and P47, three subunits of the virus-encoded RNA polymerase, share 49%, 53% and 46% sequence identity, respectively. In this study, an established transient expression system was used to test the ability of the PlxyGV LEFs to activate an AcMNPV vp39 promoter-driven reporter gene in SF9 cells. It was shown that PlxyGV le f-2 replaced the corresponding AcMNPV gene and exhibited partial activity in the context of the remaining set of AcMNPV le fs. PlxyGV LEF-2 was found to contain additional 100aa and 70aa at the C-terminus in comparison with the LEF-2 of other GVs and lepidopteran NPVs respectively.
Amino Acid Sequence
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Animals
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Gene Expression Regulation, Viral
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Granulovirus
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chemistry
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genetics
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metabolism
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Molecular Sequence Data
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Moths
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virology
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Nucleopolyhedrovirus
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genetics
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metabolism
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Sequence Alignment
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Viral Proteins
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genetics
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metabolism
7.Study on effect of artificial CsB and its components on bile acid metabolism in rats with liver fibrosis and its mechanism.
Xing ZHANG ; Feng-Hua LI ; Ping LIU ; Jia LIU ; Shuang WANG
China Journal of Chinese Materia Medica 2013;38(22):3943-3948
Bile acid is a type of metabolite degraded from cholesterol in liver. Its accumulation in liver could cause liver diseases, liver damage and liver fibrosis. In this experiment, dimethyl nitrosamine (DMN) liver fibrosis was established in rats. The rats were delivered into the normal group, the model group and four treated groups. After the four-week modeling, the treated groups were orally administered with drugs for 2 weeks, whereas the model and normal groups were given equal amount of sterile water at the same time. In the experiment, serum bile acid was taken the as marker, and liver function indexes and changes in bile acid metabolism were detected and observed to identify liver damage-related bile acid targets. It was the first time to evaluate the reverse effect of artificial CsB and its components on liver fibrosis in rats with bile acid metabolic level, and discuss its potential mechanism. The main study contents and results are as follows: a quantitative analysis was made on totally 17 endogenous bile acids, including taurocholic acid conjugated bile acid, glycine conjugated bile acid and free bile acid, and a liver damage evaluation was made for the model according to the detection of serum biochemical indexes and the pathological biopsy. After modeling, ALT, AST activity and TBil content significantly increased, whereas Alb significantly decreased. According to the pathological biopsy HE staining, the model group showed damage in normal hepatic lobule structure, liver cell edema and connective tissue proliferation in portal area; The treated groups showed mitigation in pathological changes to varying degrees. Cordyceps sinensis and its components may impact the bile acid metabolism in rats by activating HDCA, TCA, TCDCA, TLCA, TUDCA, UDCA, THDCA metabolim-related receptors or blocking relevant signaling pathway.
Animals
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Bile Acids and Salts
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metabolism
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Biological Factors
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administration & dosage
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Cordyceps
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chemistry
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physiology
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Humans
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Liver Cirrhosis
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drug therapy
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metabolism
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Male
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Moths
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chemistry
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microbiology
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Rats
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Rats, Wistar
8.Pathogenicity of bacterium, Xenorhabdus nematophila isolated from entomopathogenic nematode (Steinernema carpocapsae) and its secretion against Galleria mellonella larvae.
Ali Nawaz MAHAR ; Muhammad MUNIR ; Sami ELAWAD ; Simon Richard GOWEN ; Nigel Graham Meckenzi HAGUE
Journal of Zhejiang University. Science. B 2005;6(6):457-463
The entomopathogenic bacterium, Xenorhabdus nematophila was isolated from the hemolymph of Galleria mellonella infected with Steinernema carpocapsae. The bacterial cells and its metabolic secretions have been found lethal to the Galleria larvae. Toxic secretion in broth caused 95% mortality within 4 d of application whereas the bacterial cells caused 93% mortality after 6 d. When filter and sand substrates were compared, the later one was observed as appropriate. Similarly, bacterial cells and secretion in broth were more effective at 14% moisture and 25 degrees C temperature treatments. Maximum insect mortality (100%) was observed when bacterial concentration of 4x10(6) cells/ml was used. Similarly, maximum bacterial cells in broth (95%) were penetrated into the insect body within 2 h of their application. However, when stored bacterial toxic secretion was applied to the insects its efficacy declined. On the other hand, when the same toxic secretion was dried and then dissolved either in broth or water was proved to be effective. The present study showed that the bacterium, X. nematophila or its toxic secretion can be used as an important component of integrated pest management against Galleria.
Animals
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Bacterial Proteins
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pharmacology
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Bacterial Toxins
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pharmacology
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Larva
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drug effects
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microbiology
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Moths
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drug effects
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microbiology
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Nematoda
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microbiology
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Pest Control, Biological
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methods
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Survival Analysis
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Survival Rate
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Xenorhabdus
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metabolism
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pathogenicity
9.Bacillus thuringiensis helper protein P20 affects the formation of Cry1Ab.
Mu-Jin TANG ; Mei-Jin YUAN ; Jian-Wu CHEN ; Yong-Xia SHI ; Shao-Ling ZENG ; Jian-Xiu YU ; Yi PANG
Chinese Journal of Biotechnology 2003;19(5):566-571
The Cry1Ab differs most significantly from the other related ICPs by its absence of a carboxyl terminus of 28 amino acids including four cysteines; consequently it is less stable. We report that the helper protein P20 plays a role in the expression and crystallization of Cry1Ab. Three Cry1Ab expression plasmids pT1B, pP1B, and pDP1B, were constructed based on the shuttle vector pHT3101. The vector pT1B does not contain the p20 gene, pP1B carries p20, and pDP1B contains p20 with cry1A(c) promoter. Transformants were obtained by electroporating the plasmids into Bacillus thuringiensis acrystalliferous mutant CryB. Western blot demonstrated that crylAb was expressed as a 130 kD protein in all the transformants, and some of the protein was partially degraded into a 60 kD peptide. Quantitative protein analysis indicated that the amount of the 130 kD protein varied in the transformants and was in the ratio of 1:1.4:1.5 for PT1B, pP1B and pDP1B respectively. For the 60 kD proteins, the ratio was 1:1.1:1.6. Microscopic examination revealed that the size of the typical pyramidal crystals in the three transformants was in the order of T1B < P1B < DP1B. Bioassay showed that T1B, P1B and DP1B were all toxic to the larvae of Helicoverpa armigera with similar LC50. This study suggested that P20 plays a role in the expression and crystallization of Cry1Ab.
Animals
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Bacillus thuringiensis
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genetics
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metabolism
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ultrastructure
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Bacterial Proteins
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genetics
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metabolism
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pharmacology
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Biological Assay
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methods
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Blotting, Western
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Electroporation
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Endotoxins
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genetics
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metabolism
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pharmacology
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Hemolysin Proteins
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genetics
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metabolism
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pharmacology
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Microscopy, Electron, Transmission
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Moths
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drug effects
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Promoter Regions, Genetic
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genetics
10.Expression of human phosphodiesterase 3A gene using baculovirus expression system in insect cell.
Yong-Min YAN ; Wen-Rong XU ; Hai-Bo ZHU ; Ling ZHANG ; Ren-Ren FEI ; Xiao-Liang WANG ; Hui QIAN ; Shun-Zu HAO ; Wen-Bing WANG
Acta Pharmaceutica Sinica 2005;40(9):810-813
AIMTo investigate the expression of recombinant human phosphodiesterase 3A (HPDE3A) using baculovirus expression system in Tn cell line.
METHODSThe HPDE3A cDNA was recombined with baculovirus, and then the recombinant was transfected into Tn cell line. The expression of HPDE3A in Tn cell line was detected and identified by the RT-PCR, SDS-PAGE and Western blotting.
RESULTSThe recombinant HPDE3A protein was stably expressed in Tn cell line and detected by the distinct morphological changes of Tn cell, RT-PCR, SDS-PAGE and Western blotting using polyclonal antibody. The M(w) of the recombinant protein was about 120 kD.
CONCLUSIONRecombinant HPDE3A can be expressed in Tn cell line using the baculovirus expression system, and thus provided the basic material for studying its bioactivity and application in screening for HPDE3A inhibitor.
3',5'-Cyclic-AMP Phosphodiesterases ; genetics ; metabolism ; Animals ; Baculoviridae ; genetics ; Cell Line ; Cyclic Nucleotide Phosphodiesterases, Type 3 ; Electrophoresis, Polyacrylamide Gel ; Moths ; cytology ; enzymology ; metabolism ; RNA, Messenger ; genetics ; metabolism ; Recombinant Proteins ; genetics ; metabolism ; Transfection