نتایج جستجو برای: ژن tmc1

تعداد نتایج: 15878  

2014
Yali Zhao Dayong Wang Liang Zong Feifan Zhao Liping Guan Peng Zhang Wei Shi Lan Lan Hongyang Wang Qian Li Bing Han Ling Yang Xin Jin Jian Wang Jun Wang Qiuju Wang

Mutations in the transmembrane channel-like gene 1 (TMC1) can cause both DFNA36 and DFNB7/11 hearing loss. More than thirty DFNB7/11 mutations have been reported, but only three DFNA36 mutations were reported previously. In this study, we found a large Chinese family with 222 family members showing post-lingual, progressive sensorineural hearing loss which were consistent with DFNA36 hearing lo...

ژورنال: :مجله دانشگاه علوم پزشکی شهرکرد 0
سمیرا معتمدی samira motamedi cellular and molecular research center, shahrekord university of medical sciences, shahrekord, i.r. iran. tel: 00983833335654شهرکرد- دانشگاه علوم پزشکی شهرکرد- مرکز تحقیقات سلولی و مولکولی- تلفن:33335654-38 مرتضی هاشم زاده-چالشتری morteza hashemzadeh-chaleshtori cellular and molecular research center, shahrekord university of medical sciences, shahrekord, i.r. iran. tel: 00983833335654شهرکرد- دانشگاه علوم پزشکی شهرکرد- مرکز تحقیقات سلولی و مولکولی- تلفن:33335654-38 مرجان مجتبوی نائینی marjan mojtabavi-naeini biology dept., isfahan university of medical sciences, isfahan, i.r. iranگروه زیست شناسی، دانشگاه اصفهان، اصفهان، ایران حسین تیموری hossein teimori cellular and molecular research center, shahrekord university of medical sciences, shahrekord, i.r. iran. tel: 00983833335654شهرکرد- دانشگاه علوم پزشکی شهرکرد- مرکز تحقیقات سلولی و مولکولی- تلفن:33335654-38

زمینه و هدف: جهش های ژن tmc1 یکی از فراوان ترین دلایل ناشنوایی غیرسندرومی اتوزومی مغلوب در جمعیت های مختلف می باشد. با توجه به اندازه بزرگ این ژن و جهش های زیاد شناخته شده در آن، استفاده از مارکرهای چند شکل جهت تشخیص ناقلین و تشخیص پیش از تولد پیشنهاد می شود. در مطالعه حاضر، اطلاع دهندگی مارکر d9s1837 با توالی های تکراری ca، در پنج قوم مختلف جمعیت ایرانی مورد بررسی قرار گرفت. روش بررسی: در این ...

2013
Kyunghee X. Kim Robert Fettiplace

Vibration of the stereociliary bundles activates calcium-permeable mechanotransducer (MT) channels to initiate sound detection in cochlear hair cells. Different regions of the cochlea respond preferentially to different acoustic frequencies, with variation in the unitary conductance of the MT channels contributing to this tonotopic organization. Although the molecular identity of the MT channel...

2013
Kyunghee X. Kim Maryline Beurg Carole M. Hackney David N. Furness Shanthini Mahendrasingam Robert Fettiplace

Sound stimuli elicit movement of the stereocilia that make up the hair bundle of cochlear hair cells, putting tension on the tip links connecting the stereocilia and thereby opening mechanotransducer (MT) channels. Tmc1 and Tmc2, two members of the transmembrane channel-like family, are necessary for mechanotransduction. To assess their precise role, we recorded MT currents elicited by hair bun...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 2016
Laura F Corns Stuart L Johnson Corné J Kros Walter Marcotti

UNLABELLED The transduction of sound into electrical signals depends on mechanically sensitive ion channels in the stereociliary bundle. The molecular composition of this mechanoelectrical transducer (MET) channel is not yet known. Transmembrane channel-like protein isoforms 1 (TMC1) and 2 (TMC2) have been proposed to form part of the MET channel, although their exact roles are still unclear. U...

Journal: :Genetic testing and molecular biomarkers 2010
Mariem Ben Saïd Mounira Hmani-Aifa Imen Amar Shahid Mahmood Baig Mirna Mustapha Sedigheh Delmaghani Abdelaziz Tlili Abdelmonem Ghorbel Hammadi Ayadi Guy Van Camp Richard J H Smith Mustafa Tekin Saber Masmoudi

Founder mutations, particularly 35delG in the GJB2 gene, have to a large extent contributed to the high frequency of autosomal recessive nonsyndromic hearing loss (ARNSHL). Mutations in transmembrane channel-like gene 1 (TMC1) cause ARNSHL. The p.R34X mutation is the most frequent known mutation in the TMC1 gene. To study the origin of this mutation and determine whether it arose in a common an...

2017
Pawan Kumar Singh Manju Ghosh Shipra Sharma Shivaram Shastri Neerja Gupta Madhumita Roy Chowdhury Anuranjan Anand Madhulika Kabra

BACKGROUND & OBJECTIVES Hearing impairment is a common and heterogeneous sensory disorder in humans. Among about 90 genes, which are known to be associated with hearing impairment, mutations in the GJB2 (gap junction protein beta 2) gene are the most prevalent in individuals with hereditary hearing loss. Contribution of the other deafness-causing genes is relatively poorly understood. Here, we ...

2017
Laura F. Corns Stuart L. Johnson Corné J. Kros Walter Marcotti

(2016) Tmc1 point mutation affects Ca2+ sensitivity and block by dihydrostreptomycin of the mechanoelectrical transducer current of mouse outer hair cells. This document is made available in accordance with publisher policies and may differ from the published version or from the version of record. If you wish to cite this item you are advised to consult the publisher's version. Please see the U...

2013
Xue Gao Yu Su Li-Ping Guan Yong-Yi Yuan Sha-Sha Huang Yu Lu Guo-Jian Wang Ming-Yu Han Fei Yu Yue-Shuai Song Qing-Yan Zhu Jing Wu Pu Dai

Hereditary nonsyndromic hearing loss is highly heterogeneous and most patients with a presumed genetic etiology lack a specific diagnosis. It has been estimated that several hundred genes may be associated with this sensory deficit in humans. Here, we identified compound heterozygous mutations in the TMC1 gene as the cause of recessively inherited sensorineural hearing loss by using whole-exome...

2000
S. Tiné E. Roueff E. Falgarone M. Gerin

We report observations of several deuterated species in the dark clouds L134N and TMC1, and in particular of NH2D (deuterated ammonia). NH2D has been detected for the first time towards the dense core TMC1-N and very strong emission has been confirmed towards L134N. The deuterium fractionation is very different in these two clouds, with abundance ratio [NH2D]/[NH3]∼ 0.1 and ∼ 0.02, [N2D]/[N2H]∼...

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