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Analysis of connexin subunits required for the survival of vestibular hair cells.对前庭毛细胞存活所需连接蛋白亚基的分析。
J Comp Neurol. 2007 Oct 10;504(5):499-507. doi: 10.1002/cne.21459.
2
A deafness mechanism of digenic Cx26 (GJB2) and Cx30 (GJB6) mutations: Reduction of endocochlear potential by impairment of heterogeneous gap junctional function in the cochlear lateral wall.一种由双基因 Cx26(GJB2)和 Cx30(GJB6)突变引起的耳聋机制:通过损害耳蜗外侧壁中的异质缝隙连接功能来降低内耳电位。
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Early developmental expression of connexin26 in the cochlea contributes to its dominate functional role in the cochlear gap junctions.缝隙连接蛋白 26 在耳蜗中的早期发育表达有助于其在耳蜗缝隙连接中占据主导功能作用。
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Mice with conditional deletion of Cx26 exhibit no vestibular phenotype despite secondary loss of Cx30 in the vestibular end organs.尽管前庭终器中Cx30继发性缺失,但条件性敲除Cx26的小鼠未表现出前庭表型。
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Cochlear gap junctions coassembled from Cx26 and 30 show faster intercellular Ca2+ signaling than homomeric counterparts.由Cx26和30共同组装而成的耳蜗间隙连接比同源物表现出更快的细胞间Ca2+信号传导。
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Unique expression of connexins in the human cochlea.连接蛋白在人耳蜗中的独特表达。
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Gap junction mediated intercellular metabolite transfer in the cochlea is compromised in connexin30 null mice.在连接蛋白30基因敲除小鼠中,耳蜗中缝隙连接介导的细胞间代谢物转运受损。
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Gap junction-mediated intercellular biochemical coupling in cochlear supporting cells is required for normal cochlear functions.耳蜗支持细胞中缝隙连接介导的细胞间生化偶联是正常耳蜗功能所必需的。
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Diverse deafness mechanisms of connexin mutations revealed by studies using in vitro approaches and mouse models.使用体外方法和小鼠模型的研究揭示了连接蛋白突变的多种致聋机制。
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Coordinated control of connexin 26 and connexin 30 at the regulatory and functional level in the inner ear.内耳中连接蛋白26和连接蛋白30在调控和功能水平上的协同控制。
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本文引用的文献

1
Restoration of connexin26 protein level in the cochlea completely rescues hearing in a mouse model of human connexin30-linked deafness.在人类连接蛋白30相关耳聋的小鼠模型中,耳蜗中连接蛋白26蛋白水平的恢复完全挽救了听力。
Proc Natl Acad Sci U S A. 2007 Jan 23;104(4):1337-41. doi: 10.1073/pnas.0606855104. Epub 2007 Jan 16.
2
Vestibular evoked myogenic potentials in acute acoustic trauma.急性声创伤中的前庭诱发肌源性电位
Otol Neurotol. 2006 Oct;27(7):956-61. doi: 10.1097/01.mao.0000231590.57348.4b.
3
Cochlear gap junctions coassembled from Cx26 and 30 show faster intercellular Ca2+ signaling than homomeric counterparts.由Cx26和30共同组装而成的耳蜗间隙连接比同源物表现出更快的细胞间Ca2+信号传导。
Am J Physiol Cell Physiol. 2005 Mar;288(3):C613-23. doi: 10.1152/ajpcell.00341.2004.
4
Vestibular-evoked myogenic potentials in three patients with large vestibular aqueduct.三名大前庭导水管患者的前庭诱发肌源性电位
Hear Res. 2004 Apr;190(1-2):161-8. doi: 10.1016/S0378-5955(04)00018-8.
5
Connexin disorders of the ear, skin, and lens.耳部、皮肤和晶状体的连接蛋白疾病。
Biochim Biophys Acta. 2004 Mar 23;1662(1-2):159-70. doi: 10.1016/j.bbamem.2003.10.017.
6
Gap junctions in the inner ear: comparison of distribution patterns in different vertebrates and assessement of connexin composition in mammals.内耳中的缝隙连接:不同脊椎动物分布模式的比较及哺乳动物中连接蛋白组成的评估
J Comp Neurol. 2003 Dec 8;467(2):207-31. doi: 10.1002/cne.10916.
7
Connexins 26 and 30 are co-assembled to form gap junctions in the cochlea of mice.连接蛋白26和30共同组装,在小鼠耳蜗中形成缝隙连接。
Biochem Biophys Res Commun. 2003 Jul 25;307(2):362-8. doi: 10.1016/s0006-291x(03)01166-5.
8
Connexin30 (Gjb6)-deficiency causes severe hearing impairment and lack of endocochlear potential.连接蛋白30(Gjb6)缺陷会导致严重的听力障碍和内淋巴电位缺失。
Hum Mol Genet. 2003 Jan 1;12(1):13-21. doi: 10.1093/hmg/ddg001.
9
Human connexin26 (GJB2) deafness mutations affect the function of gap junction channels at different levels of protein expression.人类连接蛋白26(GJB2)耳聋突变在不同蛋白质表达水平上影响间隙连接通道的功能。
Hum Genet. 2002 Aug;111(2):190-7. doi: 10.1007/s00439-002-0750-2. Epub 2002 Jun 22.
10
Targeted ablation of connexin26 in the inner ear epithelial gap junction network causes hearing impairment and cell death.内耳上皮缝隙连接网络中连接蛋白26的靶向消融导致听力障碍和细胞死亡。
Curr Biol. 2002 Jul 9;12(13):1106-11. doi: 10.1016/s0960-9822(02)00904-1.

对前庭毛细胞存活所需连接蛋白亚基的分析。

Analysis of connexin subunits required for the survival of vestibular hair cells.

作者信息

Qu Yan, Tang Wenxue, Dahlke Ian, Ding Dalian, Salvi Richard, Söhl Goran, Willecke Klaus, Chen Ping, Lin Xi

机构信息

Department of Otolaryngology, Emory University School of Medicine, Atlanta, Georgia 30322-3030, USA.

出版信息

J Comp Neurol. 2007 Oct 10;504(5):499-507. doi: 10.1002/cne.21459.

DOI:10.1002/cne.21459
PMID:17702002
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2254325/
Abstract

Mutations in connexin (Cx) genes are responsible for a large proportion of human inherited prelingual deafness cases. The most commonly found human Cx mutations are either Cx26 or Cx30 deletions. Histological observations made in the organ of Corti of homozygous Cx26 and Cx30 gene knockout mice show that cochlear hair cells degenerate after the onset of hearing. However, it is unclear whether vestibular hair cells undergo similar degeneration in connexin knockout mice. To address this question, we first examined expression patterns of Cx26 and Cx30 in the saccule, utricle, and ampulla by immunolabeling. In wild-type mice, Cx26 and Cx30 immunoreactivity was found extensively in vestibular supporting cells and connective tissue cells, and the two Cxs were co-localized in most gap junction (GJ) plaques. Targeted deletion of the Cx30 gene, which caused little change in Cx26 expression pattern, resulted in a significant and age-related loss of vestibular hair cells only in the saccule. dUTP nick end labeling (TUNEL) staining also revealed on-going apoptosis specifically in saccular hair cells of Cx30(-/-) mice. These results indicated that hair cell survival in the utricle and ampulae does not require Cx30. Importantly, over-expressing the Cx26 gene from a modified bacterial artificial chromosome in the Cx30(-/-) background rescued the saccular hair cells. These results suggest that it is the reduction in the total amount of GJs rather than the specific loss of Cx30 that underlies saccular hair cell death in Cx30(-/-) mice. Hybrid GJs co-assembled from Cx26 and Cx30 were not essential for the survival of saccular hair cells.

摘要

连接蛋白(Cx)基因突变是导致大部分人类遗传性语前聋病例的原因。最常见的人类Cx突变是Cx26或Cx30缺失。在纯合Cx26和Cx30基因敲除小鼠的柯蒂氏器中进行的组织学观察表明,耳蜗毛细胞在听力开始后会退化。然而,尚不清楚连接蛋白敲除小鼠的前庭毛细胞是否会发生类似的退化。为了解决这个问题,我们首先通过免疫标记检查了Cx26和Cx30在球囊、椭圆囊和壶腹中的表达模式。在野生型小鼠中,Cx26和Cx30免疫反应性广泛存在于前庭支持细胞和结缔组织细胞中,并且这两种连接蛋白在大多数间隙连接(GJ)斑中共定位。靶向缺失Cx30基因,这对Cx26表达模式几乎没有影响,仅导致球囊中前庭毛细胞出现显著且与年龄相关的损失。脱氧尿苷三磷酸缺口末端标记(TUNEL)染色还显示,Cx30(-/-)小鼠的球囊毛细胞中存在特异性的正在进行的凋亡。这些结果表明,椭圆囊和壶腹中的毛细胞存活不需要Cx30。重要的是,在Cx30(-/-)背景下从修饰的细菌人工染色体中过表达Cx26基因挽救了球囊毛细胞。这些结果表明,是间隙连接总量的减少而非Cx30的特异性缺失是Cx30(-/-)小鼠球囊毛细胞死亡的基础。由Cx26和Cx3共同组装的混合间隙连接对球囊毛细胞的存活并非必不可少。