亚洲免费av电影一区二区三区,日韩爱爱视频,51精品视频一区二区三区,91视频爱爱,日韩欧美在线播放视频,中文字幕少妇AV,亚洲电影中文字幕,久久久久亚洲av成人网址,久久综合视频网站,国产在线不卡免费播放

        ?

        TYMSgene 5′-and 3′-untranslated region polymorphisms and risk of non-syndromic cleft lip and palate in an Indian population

        2015-12-22 09:15:18JyotsnaMurthy,VenkateshBabuG.,L.V.K.S.Bhaskar
        THE JOURNAL OF BIOMEDICAL RESEARCH 2015年4期

        TYMSgene 5′-and 3′-untranslated region polymorphisms and risk of non-syndromic cleft lip and palate in an Indian population

        Dear Editor:

        Increased homocysteine levels due to vitamin B6 or B12 deficiency or genetic defects in folate pathway genes are associated with an increased incidence of non-syndromic cleft lip with or without cleft palate (NSCLP)[1].Thymidylate synthase(TS)is a folatedependent enzyme that catalyzes methylation of 2′-deoxyuridine-5′-monophosphate(dUMP)to 2′-deoxythymidine-5′-monophosphate(dTMP),a rate-limiting step in DNA synthesis,for which 5,10-methylene-tetrahydrofolate(CH2-THF)is the methyl donor.TS competes with 5,10-methylenetetrahydrofolate reductase(MTHFR)for the availability of CH2-THF.The TYMS gene is located on chromosome 18p11.32 and is about 30 kb in length with 7 exons[2].Two most extensively studied TYMS variants are located in the promoter enhancer region of the 5′-untranslated region(UTR)and 3′-UTR.The VNTR polymorphism (rs45445694)is located in 5′-UTR,consisting of 2 or 3 tandem repeats of 28 bp(2R or 3R).A 6-bp insertion and deletion polymorphism(indel)has been identified in the 3′-UTR(rs16430)of the TYMS[3].These 2 polymorphisms have been extensively studied for association with cleft lip and palate[4].Although the TYMS plays a critical role in fetal development,so far it has not yet been reported to be associated with NSCLP in the Indian population.In this study,we investigated the effects of TYMS functional variants (rs45445694 and rs16430)on the risks of NSCLP in a southern Indian population.

        The study was carried out in 283 ethnically matched unrelated subjects,including 142 unrelated NSCLP patients(123 with cleft lip and palate and 19 with cleft palate only)and 141 healthy controls without family history of cleft.Subjects with malformation syndromes and major developmental disorders were excluded.The study was approved by the local institutional ethics committee and written informed consent was obtained from all the participants. Peripheral blood(3 mL)was collected from each subject and DNA was obtained using a standard procedure.TYMS 6-bp indel genotyping was performed using the polymerase chain reaction-restriction fragment length polymorphism(PCR-RFLP)method[5]. TYMS 5′-UTR VNTR was genotyped according to the PCR method[6].Allele frequencies were estimated by the gene counting method.Hardy-Weinberg equilibrium(HWE)was performed to assess the cases and control groups using chi-square test.Association between two TS SNPs and different cleft phenotypes (NSCLP,CLP and cleft palate only(CPO))was analyzed by x2-test.Odds ratio and 95%confidence inter-vals(CI)were calculated using low risk genotypes or alleles as the reference group.

        Table 1Association of TYMS VNTR polymorphism with NSCLP

        Table 2Association ofTYMSgene 6 bp indel with NSCLP

        The genotype frequencies of TYMS VNTR and 6 bp indel are shown inTable 1andTable 2,respectively. The genotype frequencies were in HWE in the control group of TYMS VNTR(P=0.704)and 6 bp indel (P=0.830).TYMS VNTR polymorphism showed significant difference in genotypic frequencies between NSCLP(P=0.006)and CLP(0.003)compared to the controls(Table 1).The TYMS 6 bp indel genotype and allele frequencies were not significantly different between the NSCLP and control group(Table 2).In subgroup analysis,6 bp indel showed significant association with the CPO group(Table 2).To estimate relative risk of NSCLP,we calculated OR and 95%CI in codominant,dominant and allelic models.None of the models revealed significant association between the TYMS VNTR and NSCLP group(Table 1).For TS 6 bp indel,risk analysis showed increased risk in all 3 models and increased risk reached significant level in the dominant model for the NSCLP group(OR=1.90; 95%CI=1.02-1.83 and P=0.041)(Table 2).

        Although TS is a folate-dependent enzyme,there are very few studies on the association of the TYMS gene with human orofacial clefts.TS is an autoregulatory protein composed of 313-amino acids and binds to its messenger RNA(mRNA)directly and inhibits mRNA translation.A Norway family based association study did not find evidence of an association between several TYMS variants and folate intake on risk of orofacial clefts[6].A family-based association study of NSCLP with TYMS gene variants showed altered familial transmission of haplotypes in the non-Hispanic group for cleft risk[7].However,these two studies did not investigate the TYMS variants in

        our sutdy.

        The 5′-UTR VNTR was found to influence the efficiency of TYMS expression.TS genes with the 2R2R repeat sequence showed that the expression activity of the gene was lower than that of the gene with the 3R3R repeat sequence[8].A recent case-control study showed that the homozygous 2R2R repeat sequence influenced CP risk[4].Another 6 bp indel suggest that the homozygous insertion(+6 bp/+6 bp)had significantly higher TS mRNA levels compared to individuals with homozygous deletion(-6 bp/-6 bp),which is associated with decreased TYMS mRNA stability[9]. Individuals with the homozygous(-6 bp/-6 bp)genotype have higher red blood cell folate levels and lower plasma homocysteine levels compare to(+6 bp/+6 bp) or(+6 bp/-6 bp)genotypes[10].A recent case-control study does not indicate that SNP rs16430 genotype contributes to CLP or CP risks either alone or in combination with folate intake[4].

        In conclusion,we report that the TYMSS 5’UTR VNTR and 3’UTR 6-bp indel are significantly associated with increased risk of NSCLP in a southern Indian population.To obtain more evidence on the association between TYMS polymorphisms and NSCLP, population studies conducted among other ethnicities are required.Furthermore,the analysis of biochemical mechanisms of the TYMS polymorphisms in the pathogenesis of NSCLP requires investigation.

        Yours sincerely,

        Dr.Jyotsna Murthy

        Department of Biomedical Sciences,

        Sri Ramachandra University,

        Chennai,

        India.

        Dr.Venkatesh Babu G.and Dr.L.V.K.S.Bhaskar?

        Department of Plastic Surgery,

        Sri Ramachandra University,

        Chennai,

        India.

        Acknowledgements

        L.V.K.S.Bhaskar acknowledges funding from the Indian Council of Medical Research(ICMR), Government of India(Project Ref.No.56/15/2007-BMS).

        [1] Bhaskar LV,Murthy J,Venkatesh Babu G.Polymorphisms in genes involved in folate metabolism and orofacial clefts[J].Arch Oral Biol,2011.

        [2] Kaneda S,Nalbantoglu J,Takeishi K,et al.Structural and functional analysis of the human thymidylate synthase gene[J].The Journal of biological chemistry,1990, 265(33):20277-20284.

        [3] Takeishi K,Kaneda S,Ayusawa D,et al.Human thymidylate synthase gene:isolation of phage clones which cover a functionally active gene and structural analysis of the region upstream from the translation initiation codon[J].J Biochem,1989,106(4):575-583.

        [4] Shaw GM,Yang W,Perloff S,et al.Thymidylate synthase polymorphisms and risks of human orofacial clefts[J].Birth Defects Res A Clin Mol Teratol,2013, 97(2):95-100.

        [5] Ulrich CM,Bigler J,Bostick R,et al.Thymidylate synthase promoter polymorphism,interaction with folate intake,and risk of colorectal adenomas[J].Cancer Res, 2002,62(12):3361-3364.

        [6] Boyles AL,Wilcox AJ,Taylor JA,et al.Oral facial clefts and gene polymorphisms in metabolism of folate/one-carbon and vitamin A:a pathway-wide association study[J]. Genet Epidemiol,2009,33(3):247-255.

        [7] Blanton SH,Henry RR,Yuan Q,et al.Folate pathway and nonsyndromic cleft lip and palate[J].Birth Defects Res A Clin Mol Teratol,2011,91(1):50-60.

        [8] Ghosh S,Winter JM,Patel K,et al.Reexamining a proposal:thymidylate synthase 5′-untranslated region as a regulator of translation efficiency[J].Cancer Biol Ther, 2011,12(8):750-755.

        [9] Mandola MV,Stoehlmacher J,Zhang W,et al.A 6 bp polymorphism in the thymidylate synthase gene causes message instability and is associated with decreased intratumoral TS mRNA levels[J].Pharmacogenetics,2004, 14(5):319-327.

        [10]Kealey C,Brown KS,Woodside JV,et al.A common insertion/deletion polymorphism of the thymidylate synthase(TYMS)gene is a determinant of red blood cell folate and homocysteine concentrations[J].Hum Genet, 2005,116(5):347-353.

        Tel:8224979600,

        E-mail:lvksbhaskar@gmail.com

        Received 15 October 2014,Revised 25 January 2015,Accepted 12 February 2015,Epub 10 April 2015

        R181,Document code:B

        The authors reported no conflict of interests.

        亚洲av永久无码精品秋霞电影影院 | 亚洲欧美精品91| 亚洲av永久无码精品成人| 五月婷婷丁香视频在线观看 | 亚洲国产成人精品无码区二本| 伊人久久成人成综合网222| 大白屁股流白浆一区二区三区| 亚洲av色福利天堂久久入口| 爱情岛论坛亚洲永久入口口| 国产a v无码专区亚洲av| 亚洲欧美久久婷婷爱综合一区天堂| 宅男视频一区二区三区在线观看| 999国产精品999久久久久久| 在线播放亚洲第一字幕| 国产一精品一aⅴ一免费| 精品女厕偷拍视频一区二区区| 最新国产毛2卡3卡4卡| 久久中文精品无码中文字幕| 欧美日韩一二三区高在线| 谷原希美中文字幕在线| 啦啦啦www在线观看免费视频| 一本大道香蕉最新在线视频| 免费毛片一区二区三区女同| 国产变态av一区二区三区调教| 亚洲精品国产美女久久久| 欧美伊人网| 日本熟妇裸体视频在线| 国产av一区二区三区无码野战| 又粗又大又黄又爽的免费视频| 亚洲AV秘 无码一区二区在线| 国产91久久麻豆黄片| 久久久久亚洲av片无码下载蜜桃| 精品囯产成人国产在线观看| 久久中文字幕av一区二区不卡 | 白色白色视频在线观看| 性猛交ⅹxxx富婆视频| 吃奶还摸下面动态图gif| 中文字幕偷拍亚洲九色| 日本国产亚洲一区二区| 亚洲aⅴ天堂av天堂无码麻豆| 福利网在线|