연구논문

세부과제번호 2014M3A9D5A01073865 단계 1단계 3차년도
세부과제명 IMPC 마우스 이차 청각표현형 분석 기반구축 및 서비스 제공 공동 유/무 -
SCI여부 Y 게재년월 2016-02
논문제목 The pathological effects of connexin 26 variants related to hearing loss by in silico and in vitro analysis.
총저자명 Hui Ram KimSe-Kyung OhEun-Shil LeeSoo-Young ChoiSeung-Eon RohSang Jeong KimTomitake TsukiharaKyu-Yup LeeChang-Jin JeonUn-Kyung Kim
학술지명 Hum. Genet. 게재권(호) 135(3)
저널구분 - 페이지수 287- 298
참여연구원 복진웅 연구책임자 복진웅
과제기여도 50 PMID 26749107
사사기관수 - IF (년도) 4.824
제1저자 김휘람 교신저자 김운경
공동저자 -
초록
Gap junctions (GJs) are intercellular channels associated with cell-cell communication. Connexin 26 (Cx26) encoded by the GJB2 gene forms GJs of the inner ear, and mutations of GJB2 cause congenital hearing loss that can be syndromic or non-syndromic. It is difficult to predict pathogenic effects using only genetic analysis. Using ionic and biochemical coupling tests, we evaluated the pathogenic effects of Cx26 variants using computational analyses to predict structural abnormalities. For seven out of ten variants, we predicted the variation would result in a loss of GJ function, whereas the others would completely fail to form GJs. Functional studies demonstrated that, although all variants were able to function normally as hetero-oligomeric GJ channels, six variants (p.E47K, p.E47Q, p.H100L, p.H100Y, p.R127L, and p.M195L) did not function normally as homo-oligomeric GJ channels. Interestingly, GJs composed of the Cx26 variant p.R127H were able to function normally, even as homo-oligomeric GJ channels. This study demonstrates the particular location and property of an amino acid are more important mainly than the domain where they belong in the formation and function of GJ, and will provide information that is useful for the accurate diagnosis of hearing loss.
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