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首页> 外文期刊>Neuron >Structural determinants of cadherin-23 function in hearing and deafness.
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Structural determinants of cadherin-23 function in hearing and deafness.

机译:钙黏着蛋白23在听力和耳聋中的结构决定因素。

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摘要

The hair-cell tip link, a fine filament directly conveying force to mechanosensitive transduction channels, is composed of two proteins, protocadherin-15 and cadherin-23, whose mutation causes deafness. However, their molecular structure, elasticity, and deafness-related structural defects are unknown. We present crystal structures of the first and second extracellular cadherin repeats of cadherin-23. Overall, structures show typical cadherin folds, but reveal an elongated N terminus that precludes classical cadherin interactions and contributes to an N-terminal Ca(2+)-binding site. The deafness mutation D101G, in the linker region between the repeats, causes a slight bend between repeats and decreases Ca(2+) affinity. Molecular dynamics simulations suggest that cadherin-23 repeats are stiff and that either removing Ca(2+) or mutating Ca(2+)-binding residues reduces rigidity and unfolding strength. The structures define an uncharacterized cadherin family and, with simulations, suggest mechanisms underlying inherited deafness and how cadherin-23 may bind with itself and with protocadherin-15 to form the tip link.
机译:毛细胞尖端连接是直接将力传递至机械敏感转导通道的细丝,由两种蛋白质组成,即原钙黏着蛋白15和钙黏着蛋白23,它们的突变会引起耳聋。但是,它们的分子结构,弹性和与耳聋有关的结构缺陷是未知的。我们目前的钙粘蛋白23第一和第二个细胞外钙粘蛋白重复的晶体结构。总体而言,结构显示典型的钙粘着蛋白折叠,但揭示了一个拉长的N末端,排除了经典的钙粘着蛋白的相互作用,并有助于N末端Ca(2+)结合位点。重复之间的接头区域中的耳聋突变D101G,导致重复之间的轻微弯曲并降低Ca(2+)亲和力。分子动力学模拟表明,钙粘着蛋白23重复是僵硬的,或者删除Ca(2+)或突变Ca(2+)结合残基会降低刚度和展开强度。该结构定义了一个未表征的钙黏着蛋白家族,并通过模拟提示了遗传性耳聋的潜在机制,以及钙黏着蛋白23如何与自身以及与原始钙黏着蛋白15结合形成末端连接。

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