【摘 要】
:
In this report,we identified a homozygous missense mutation in a novel gene,TMEM132E (transmembrane protein 132E),in a chinese consanguineous family with nonsyndromic hearing loss using whole exome se
【机 构】
:
Key Laboratory for Experimental Teratology of the Ministry of Education and Department of Medical Ge
【出 处】
:
中华医学会2012年医学遗传学年会暨全国第十一次医学遗传学学术会议
论文部分内容阅读
In this report,we identified a homozygous missense mutation in a novel gene,TMEM132E (transmembrane protein 132E),in a chinese consanguineous family with nonsyndromic hearing loss using whole exome sequencing combined with homozygosity mapping.After filtering out the variants using the data from dbSNP131,the 1000 Genomes Project,and HapMap databases,only a single deleterious mutation remained in the homozygous region co-segregate with the phenotype.To test the population frequency,we genotyped 600 Chinese Han controls and did not find a carrier of this mutation in these controls.We further sequenced the coding region of TMEM132E in 95 unrelated affected individuals,no disease causing mutation was found,possibly suggesting this nonsyndromic hearing loss is very rare in Chinese population.The homozygous missense mutation c.1259G>A leads to a Arg to Gin change(p.Arg420Gln)which is highly conserved across the species.SIFT and PolyPhen-2 prediction results revealed that the change is detrimental to protein function.So far,very little is known about TMEM132E function.To investigate its potential role in the development of inner ear and pathogenesis of hearing loss,several in vivo and in vitro studies were conducted.qPCR and immunofluorescence results showed that TMEM132E was expressed primarily in the inner ear hair cells although it expressed in many tissues.In addition,we used morpholino-mediated knockdown of its zebrafish ortholog,Tmie132e.We found that Tmie132e knockdown in zebrafish resulted in morphological and developmental defects of the inner ear hair cells and imbalanced swimming motion.Co-Injection of human wild-type TMEM132E mRNA but not the mutant TMEM132E mRNA could rescue the phenotype partially.Our results strongly suggested that TMEM132E is a novel hearing loss gene.
其他文献
目的 在小鼠中敲除或敲入TGFβ2基因,可引起心脏多种畸形,如室间隔缺损和右室双流出道等多种类似法洛四联症的表型.但法洛四联症患儿是否存在TGFβ2表达异常尚不得而知.本研究通过检测患儿心脏的TGFβ2表达水平以及基因序列,探讨该基因变异与人类法洛四联症的关系.方法 提取100例法洛四联症患儿外周血DNA,进行全外显子测序.取57例法洛四联症患者、5例年龄匹配的正常儿童以及20例流产的胎儿心肌右室
Objectives Genetic screening for germ-line mutations in the RET proto-oncogene has been extensively exploited worldwide to optimize the diagnostic and clinical management of multiple endocrine neoplas
目的 染色体17q12-21上ERBB2扩增子基因群单核苷酸多态性与胃癌易感性以及胃癌临床病理特征的关系.方法 使用Sequenom基因分型仪对安徽省汉族人群311例胃癌患者和425例正常人的ERBB2扩增子相关基因(PPP1R1B/DARPP32(protein phosphatase 1 regulatory subunit 1B),STARD3/MLN64(metastatic lymph
目的 依据临床治疗用药安全性是第一的理念,探索一种有利于优生的治疗PCO、高雄激素血症、PCOS 方法:VitE+胎盘片+生活规律、劳逸结合、精神放松.方法 VitE+胎盘片(人胎盘片/胚宝)+生活规律、劳逸结合、精神放松.PCO、高雄激素血症、PCOS入选病例符合2003年鹿特丹标准.剂量:VitE 0.1 po tid 胎盘片(人胎盘片/胚宝)1~3片po tid;治疗时间15天至3个月为一观
Esophageal cancer is one of the most aggressive cancers worldwide because of its distant metastasis at the time of diagnosis.Epithelial-mesenchymal transition(EMT)is the hallmark of tumor metastasis,c
Schizophrenia is a severe psychiatric disorder,characterized by disordered thinking,emotion,cognition and behaviors,and by disharmony between mental activity and environment.Previous linkage analysis
目的 庆大霉素(Gentamincin,GM)是一种主要作用于格兰氏阴性菌的氨基糖苷类抗生素(Aminoglycoside antibiotics,AmAn),可通过结合至细菌核糖体的30s亚单位抑制细菌蛋白质的合成.然而,庆大霉素对耳、肾的毒性使其临床应用受到了限制,其机制尚不明确.我们通过研究内质网应激相关因子CHOP等在庆大霉素诱导的耳、肾毒性组织中的表达,探讨内质网应激在庆大霉素毒性中的作
一氧化氮(NO)是一种重要的血压调节因子,它由左旋精氨酸在一氧化氮合酶(NOS)催化下合成.NOS包括三种亚型:神经性(nNOS)、诱导型(iNOS)及内皮型(eNOS).非对称性二甲基精氨酸(ADMA)是三种NOS的共同内源性抑制剂,其水平在高血压、高血脂等疾病中显著升高.在体内ADMA主要由二甲基精氨酸二甲胺水解酶(DDAH)降解,后者分为两种亚型(DDAH1和DDAH2),DDAH2具有较为
目的 筛选并鉴定转染Islet-1慢病毒载体的C3H10T1/2细胞特化心肌样细胞过程中Islet-1募集的组蛋白乙酰化复合体;明确Islet-1在C3H10T1/2细胞特化乙酰化心肌样细胞调控网络中的关键枢纽作用.方法 采用倒置相差显微镜观察转染Islet-1慢病毒载体后的各组C3H10T1/2的细胞形态.免疫荧光细胞化学检测Islet-1在C3H10T1/2细胞的表达部位,Western-bl
先天性心脏病(Congenital Heart Disease,CHD)是一种常见的先天畸形,由遗传因素与环境因素共同作用引起,其中遗传因素发挥重要作用,遗传率为55%~65%.心脏的发育过程受多种转录因子调控,其中T-box家族的TBX20基因参与调控心脏的增殖,分化以及心房的形成等,在心脏的发育过程中具有十分重要的作用.目的 研究靶向干扰Tbx20基因表达对心肌细胞凋亡和增殖的影响.方法 人工