1.Discovery of proqodine A derivatives with antitumor activity targeting NAD(P)H: quinone oxidoreductase 1 and nicotinamide phosphoribosyltransferase.
Jiangzhou SONG ; Guiqing ZOU ; Zhou ZHAO ; Ya ZHU ; Jiayu XUE ; Lanjia AO ; Huiyong SUN ; Haiping HAO ; Bo ZHANG ; Xiaowei XU
Chinese Journal of Natural Medicines (English Ed.) 2024;22(1):75-88
NAD(P)H: quinone oxidoreductase 1 (NQO1) is a flavin protease highly expressed in various cancer cells. NQO1 catalyzes a futile redox cycle in substrates, leading to substantial reactive oxygen species (ROS) production. This ROS generation results in extensive DNA damage and elevated poly (ADP-ribose) polymerase 1 (PARP1)-mediated consumption of nicotinamide adenine dinucleotide (NAD+), ultimately causing cell death. Nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme in the NAD+ salvage synthesis pathway, emerges as a critical target in cancer therapy. The concurrent inhibition of NQO1 and NAMPT triggers hyperactivation of PARP1 and intensive NAD+ depletion. In this study, we designed, synthesized, and assessed a novel series of proqodine A derivatives targeting both NQO1 and NAMPT. Among these, compound T8 demonstrated potent antitumor properties. Specifically, T8 selectively inhibited the proliferation of MCF-7 cells and induced apoptosis through mechanisms dependent on both NQO1 and NAMPT. This discovery offers a promising new molecular entity for advancing anticancer research.
Humans
;
NAD/metabolism*
;
Cell Line, Tumor
;
Reactive Oxygen Species/metabolism*
;
Nicotinamide Phosphoribosyltransferase/metabolism*
;
Cytokines/metabolism*
;
Quinones
;
Oxidoreductases
2.Analysis of clinical phenotypes and MMACHC gene variants in 65 children with Methylmalonic acidemia and homocysteinemia.
Chongfen CHEN ; Yaodong ZHANG ; Lili GE ; Lei LIU ; Xiaoman ZHANG ; Shiyue MEI ; Shuying LUO
Chinese Journal of Medical Genetics 2023;40(9):1086-1092
OBJECTIVE:
To carry out Sanger sequencing for MMACHC gene variants among 65 Chinese pedigrees affected with combined methylmalonic aciduria and homocysteinemia, and summarize their genetic and clinical characteristics and prognosis.
METHODS:
Clinical characteristics of the 65 children identified with Methylmalonic acidemia and homocysteinemia at the Children's Hospital Affiliated to Zhengzhou University (Zhengzhou Children's Hospital) from April 2017 to April 2022 were selected as the study subjects. Potential variants of the MMACHC gene were detected by direct sequencing of the PCR products.
RESULTS:
The median age of the 65 children was 3 months (14 days to 17 years old). These included 28 cases (43.08%) from neonatal screening, 11 cases (16.92%) with a history of jaundice, and 9 cases (13.85%) with various degrees of anemia. The main clinical symptoms included development delay, slow growth, epilepsy, hydrocephalus, lethargy, feeding difficulty, regression or decline in motor ability, recurrent respiratory infections, anemia, jaundice, respiratory and heart failures, hydrocephalus, limb weakness, and hypertension. Blood and urine tandem mass spectrometry screening has revealed increase of methylmalonic acid, propionyl carnitine, propionyl carnitine/acetylcarnitine ratio, and propionyl carnitine/free carnitine ratio to various extents, and blood homocysteine was increased in all patients. The detection rate of genetic variants was 98.46% (128/130), and in total 22 types of MMACHC gene variants were detected. The most common ones have included c.609G>A (W203X) (58/128), c.658-660del (K220del) (19/128), and c.80A>G (Q27A) (16/128). Two novel variants have been identified, namely c.565C>T (p.R189C) and c.624_ 625delTG (p.A208Afs), which were respectively predicted as likely pathogenic (PM2_Supporting+PM3+PP2+PP3) and pathogenic (PVS1+PM2_Supporting+PM3+PP2) based on the guidelines from the American College of Medical Genetics and Genomics (ACMG). Exon 4 had the highest frequency for the detection.
CONCLUSION
Identification of MMACHC gene variants has confirmed the diagnosis in the children, among which the c.609G>A variant has the highest frequency. Discovery of the new variants has enriched the mutational spectrum of the MMACHC gene.
Humans
;
Amino Acid Metabolism, Inborn Errors/genetics*
;
Hydrocephalus
;
Oxidoreductases
3.Analysis of SUOX gene variants and clinical features in a child with Isolated sulfite oxidase deficiency.
Chinese Journal of Medical Genetics 2023;40(2):177-180
OBJECTIVE:
To explore the clinical features and genetic basis for a child with early-onset Isolated sulfite oxidase deficiency (ISOD).
METHODS:
A child with ISOD who was admitted to Weihai Hospital Affiliated to Qingdao University on May 10, 2020 was selected as the study subject. Clinical data of the child was analyzed. The child and her parents were subjected to trio-whole exome sequencing, and candidate variants were verified by Sanger sequencing.
RESULTS:
The female neonate was transferred to the intensive care unit due to "secondary pollution of amniotic fluid and laborious breathing for 11 minutes", and had developed frequent convulsions. Genetic testing revealed that she has harbored c.1200C>G and c.188G>A compound heterozygous variants of the SUOX gene, which were inherited from her mother and father, respectively. The c.1200C>G has been described previously and was rated as pathogenic based on guidelines from the American College of Medical Genetics and Genomics, whilst the c.188G>A variant was unreported previously and rated as variant of unknown significance.
CONCLUSION
The compound heterozygous variants of the SUOX gene probably underlay the ISOD in this child. Above finding has enriched the spectrum of SUOX gene variants and provided a basis for the clinical diagnosis and genetic counseling.
Female
;
Humans
;
Infant, Newborn
;
Amino Acid Metabolism, Inborn Errors/diagnosis*
;
Genetic Counseling
;
Genetic Testing
;
Mutation
;
Oxidoreductases Acting on Sulfur Group Donors/genetics*
;
Sulfite Oxidase/genetics*
4.Modification of C20 oxidase in tanshinone biosynthesis pathway.
Xiao-Qing CAO ; Xiao-Hui MA ; Ya-Tian CHENG ; Qi-Shuang LI ; Jun-Ling BU ; Ying MA ; Juan GUO
China Journal of Chinese Materia Medica 2023;48(9):2298-2306
Tanshinones are one of the main effective components of Salvia miltiorrhiza, which play important roles in the treatment of cardiovascular diseases. Microbial heterogony production of tanshinones can provide a large number of raw materials for the production of traditional Chinese medicine(TCM) preparations containing S. miltiorrhiza, reduce the extraction cost, and relieve the pressure of clinical medication. The biosynthetic pathway of tanshinones contains multiple P450 enzymes, and the catalytic element with high efficiency is the basis of microbial production of tanshinones. In this study, the protein modification of CYP76AK1, a key P450-C20 hydroxylase in tanshinone pathway, was researched. The protein modeling methods SWISS-MODEL, Robetta, and AlphaFold2 were used, and the protein model was analyzed to obtain the reliable protein structure. The semi-rational design of mutant protein was carried out by molecular docking and homologous alignment. The key amino acid sites affecting the oxidation activity of CYP76AK1 were identified by molecular docking. The function of the obtained mutations was studied with yeast expression system, and the CYP76AK1 mutations with continuous oxidation function to 11-hydroxysugiol were obtained. Four key amino acid sites that affected the oxidation acti-vity were analyzed, and the reliability of three protein modeling methods was analyzed according to the mutation results. The effective protein modification sites of CYP76AK1 were reported for the first time in this study, which provides a catalytic element for different oxidation activities at C20 site for the study of the synthetic biology of tanshinones and lays a foundation for the analysis of the conti-nuous oxidation mechanism of P450-C20 modification.
Oxidoreductases
;
Biosynthetic Pathways
;
Molecular Docking Simulation
;
Reproducibility of Results
;
Salvia miltiorrhiza/chemistry*
;
Amino Acids/metabolism*
;
Plant Roots/genetics*
5.Genetic analysis of 21 cases of methylmalonic acidemia.
Xing WANG ; Xiaohong SUN ; Shengju HAO ; Furong LIU ; Qinghua ZHANG ; Lei ZHENG ; Chuan ZHANG
Chinese Journal of Medical Genetics 2022;39(4):362-365
OBJECTIVE:
To carry out genetic analysis for 21 patients with methylmalonic acidemia (MMA) and provide genetic counseling for their families.
METHODS:
Next generation sequencing (panel) was used to detect the pathogenic variants underlying the disease.
RESULTS:
In total 29 variant sites of MMUT, MMAA, MMUT were identified in the 21 patients, with common variants including c.323G>A (10%), c.917C>T (10%), c.984delC (10%) of MMUT gene, and c.609G>A (45%), c.80A>G (10%) , c.567dupT (10%) of MMACHC gene. Among these, c.2000A>G of MMUT, c.298G>T of MMACHC and c.734-7A>G of MMAA gene were unreported previously.
CONCLUSION
Genetic testing for MMA patients can clarify the cause of the disease and provide a basis for the clinical diagnosis. Discovery of novel variants has enriched the mutational spectrum of MMA.
Amino Acid Metabolism, Inborn Errors/genetics*
;
Genetic Testing
;
High-Throughput Nucleotide Sequencing
;
Humans
;
Mutation
;
Oxidoreductases/genetics*
6.Transcriptomic analysis of the ΔPaLoc mutant of Clostridioides difficile and verification of its toxicity.
Gu Zhen CUI ; Qing Shuai ZHOU ; Qin Quan CHENG ; Feng Qin RAO ; Yu Mei CHENG ; Yan TIAN ; Ting ZHANG ; Zheng Hong CHEN ; Jian LIAO ; Zhi Zhong GUAN ; Xiao Lan QI ; Qi WU ; Wei HONG
Chinese Journal of Preventive Medicine 2022;56(5):601-608
Objective: Comparative analyses of wild-type Clostridioides difficile 630 (Cd630) strain and pathogenicity locus (PaLoc) knockout mutant (ΔPaLoc) by using RNA-seq technology. Analysis of differential expression of Cd630 wild-type strain and ΔPaLoc mutant strain and measurement of its cellular virulence changes. Lay the foundation for the construction of an toxin-attenuated vaccine strain against Clostridioides difficile. Methods: Analysis of Cd630 and ΔPaLoc mutant strains using high-throughput sequencing (RNA-seq). Clustering differentially expressed genes and screening differentially expressed genes by DESeq software. Further analysis of differential genes using Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment. Finally, cytotoxicity assays of ΔPaLoc and Cd630 strains were performed in the African monkey kidney epithelial cell (Vero) and the human colonic cell (Caco-2) lines. Results: The transcriptome data showed that the ΔPaLoc mutant toxin genes tcdA and tcdB were not transcribed. Compared to the wild-type strain, CD630_36010, CD630_020910,CD630_02080 and cel genes upregulated 17.92,11.40,8.93 and 7.55 fold, respectively. Whereas the hom2 (high serine dehydrogenase), the CD630_15810 (spore-forming protein), CD630_23230 (zinc-binding dehydrogenase) and CD630_23240 (galactitol 1-phosphate 5-dehydrogenase) genes were down-regulated by 0.06, 0.075, 0.133 and 0.183 fold, respectively. The GO and KEGG enrichment analyses showed that the differentially transcribed genes in ΔPaLoc were enriched in the density-sensing system, ABC transport system, two-component system, phosphotransferase (PTS) system, and sugar metabolism pathway, as well as vancomycin resistance-related pathways. Cytotoxicity assays showed that the ΔPaLoc mutant strain lost its virulence to Vero and Caco-2 cells compared to the wild-type Cd630 strain. Conclusion: Transcriptional sequencing analysis of the Cd630 and ΔPaLoc mutant strains showed that the toxin genes were not transcribed. Those other differential genes could provide a reference for further studies on the physiological and biochemical properties of the ΔPaLoc mutant strain. Cytotoxicity assays confirmed that the ΔPaLoc mutant lost virulence to Vero and Caco-2 cells, thus laying the foundation for constructing an toxin-attenuated vaccine strain against C. difficile.
Bacterial Proteins/metabolism*
;
Bacterial Toxins/metabolism*
;
Caco-2 Cells
;
Clostridioides
;
Clostridioides difficile/genetics*
;
Humans
;
Oxidoreductases/metabolism*
;
Transcriptome
;
Vaccines, Attenuated
7.TSTA3 gene promotes esophageal cancer invasion through MAPK-ERK pathway and downstream MMP2/9.
En Wei XU ; Jie YANG ; Ling ZHANG
Chinese Journal of Pathology 2022;51(1):50-52
Carbohydrate Epimerases/metabolism*
;
Cell Line, Tumor
;
Cell Movement
;
Cell Proliferation
;
Esophageal Neoplasms/genetics*
;
Gene Expression Regulation, Neoplastic
;
Humans
;
Ketone Oxidoreductases/metabolism*
;
MAP Kinase Signaling System
;
Matrix Metalloproteinase 2/genetics*
;
Matrix Metalloproteinase 9
;
Neoplasm Invasiveness/genetics*
8.Genetic variant analysis and prenatal diagnosis for Chinese pedigrees affected with cblC methylmalonic acidemia.
Lei LI ; Yanjie XIA ; Shuang HU ; Guiying CHENG ; Xiaofan ZHU ; Yang LIU ; Xiangdong KONG
Chinese Journal of Medical Genetics 2022;39(10):1058-1064
OBJECTIVE:
To detect variants of the MMACHC gene among 110 ethnic Han Chinese pedigrees affected with metabolic deficiency methylmalonic acidemia (MMA) of cobalamin C (cblC).
METHODS:
Peripheral blood samples were collected from the probands and their parents. Following DNA extraction, the coding regions of the MMACHC gene were subjected to PCR amplification, Sanger sequencing and quantitative PCR assaying. For 48 pedigrees, chorionic villus samples were taken for prenatal genetic diagnosis.
RESULTS:
Thirty five types of variants were detected among the 110 pedigrees, which included missense, nonsense, frameshifting, splicing variants and exonic deletions. Most variants have occurred in exons 4 (73.18%). The detection rate for c.609G>A (p.Trp203Ter) variant was the highest (33.64%), followed by c.658_660delAAG (12.27%), c.567dupT (9.09%) and c.80A>G (6.82%). Two variants, namely c.57_58insT (p.Gly20Trpfs*14) and c.505_506delAT (p.Ile169Argfs*12), were unreported previously and both were of frameshifting types. For the 48 pedigrees undergoing prenatal diagnosis, 14 fetuses were found to be normal, 24 have carried heterozygous variants, the remaining 10 have carried compound heterozygous or homozygous variants.
CONCLUSION
The discovery of the two novel variants has expanded the spectrum of the MMACHC gene variants among ethnic Han population. Above finding has provide a basis for the prenatal diagnosis and genetic counseling for the affected pedigrees.
Amino Acid Metabolism, Inborn Errors/genetics*
;
China
;
DNA
;
Female
;
Humans
;
Mutation
;
Oxidoreductases/genetics*
;
Pedigree
;
Pregnancy
;
Prenatal Diagnosis
;
Vitamin B 12/genetics*
9.Application and the limitation of next generation sequencing for the diagnosis of methylmalonic acidemia.
Lisa SU ; Shuang HU ; Xiangdong KONG
Chinese Journal of Medical Genetics 2021;38(8):740-744
OBJECTIVE:
To identify genetic variants among patients with methylmalonic acidemia and provide genetic evidence for prenatal diagnosis.
METHODS:
Thirty-one probands and their parents were subjected to next generation sequencing (NGS). Suspected variants were verified by Sanger sequencing.
RESULTS:
25 probands or their parents were found to harbor previously known pathogenic or likely pathogenic variants, and three probands were found to carry heterozygous MMACHC exonic deletion. The overall diagnostic yield was 90.32%.
CONCLUSION
NGS can improve the detection rate for methylmalonic acidemia for its accuracy and efficiency, yet the detection of exonic deletion is required to further improve the diagnostic yield. The identification of specific variants provided evidence for prenatal diagnosis.
Amino Acid Metabolism, Inborn Errors/genetics*
;
Female
;
Heterozygote
;
High-Throughput Nucleotide Sequencing
;
Humans
;
Mutation
;
Oxidoreductases
;
Pregnancy
;
Prenatal Diagnosis
10.Progress in vitamin C biosynthesis related dehydrogenases.
Yue CHEN ; Jingwen ZHOU ; Jian CHEN
Chinese Journal of Biotechnology 2021;37(6):1827-1844
Vitamin C is an essential vitamin for human beings. It has a huge market in the fields of food and pharmaceuticals. 2-keto-L-gulonic acid is an important precursor to produce vitamin C by microbial fermentation in industrial. In microbial fermentations, the L-sorbose pathway and the D-gluconate pathway have been the focus of research because of high yield. This article aims at stating recent research progress in dehydrogenases related to biosynthesis of vitamin C in the L-sorbose pathway and the D-gluconate pathway. The properties of dehydrogenase in terms of localization, substrate specificity, cofactors, and electron transport carrier are elaborated. And then, the main problems and strategies are reviewed in the L-sorbose pathway and in the D-gluconate pathway. Finally, future research on the dehydrogenases in the biosynthesis of vitamin C through L-sorbose pathway and D-gluconate pathway is discussed.
Ascorbic Acid/biosynthesis*
;
Fermentation
;
Gluconates
;
Oxidoreductases/metabolism*
;
Sorbose

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