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Structural and biochemical consequences of disease-causing mutations in the ankyrin repeat domain of the human TRPV4 channel

机译:人TRPV4通道锚蛋白重复域中致病突变的结构和生化后果

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The TRPV4 calcium-permeable cation channel plays important physiological roles in osmosensation, mechanosensation, cell barrier formation, and bone homeostasis. Recent studies reported that mutations in TRPV4, including some in its ankyrin repeat domain (ARD), are associated with human inherited diseases, including neuropathies and skeletal dysplasias, probably because of the increased constitutive activity of the channel. TRPV4 activity is regulated by the binding of calmodulin and small molecules such as ATP to the ARD at its cytoplasmic N-terminus. We determined structures of ATP-free and -bound forms of human TRPV4-ARD and compared them with available TRPV-ARD structures. The third inter-repeat loop region (Finger 3 loop) is flexible and may act as a switch to regulate channel activity. Comparisons of TRPV-ARD structures also suggest an evolutionary link between ARD structure and ATP binding ability. Thermal stability analyses and molecular dynamics simulations suggest that ATP increases stability in TRPV-ARDs that can bind ATP. Biochemical analyses of a large panel of TRPV4-ARD mutations associated with human inherited diseases showed that some impaired thermal stability while others weakened ATP binding ability, suggesting molecular mechanisms for the diseases.
机译:TRPV4钙可渗透阳离子通道在渗透,机械感觉,细胞屏障形成和骨稳态中起重要的生理作用。最近的研究报道,TRPV4的突变,包括其锚蛋白重复域(ARD)中的一些突变,与人类遗传性疾病(包括神经病变和骨骼发育不良)有关,这可能是由于该通道的组成活性增加所致。 TRPV4活性受钙调蛋白和小分子(如ATP)在其细胞质N端与ARD结合的调节。我们确定了人类TRPV4-ARD的无ATP和结合形式的结构,并将其与可用的TRPV-ARD结构进行了比较。第三重复间环路区域(Finger 3环路)很灵活,可以用作调节通道活动的开关。 TRPV-ARD结构的比较还表明ARD结构和ATP结合能力之间的进化联系。热稳定性分析和分子动力学模拟表明,ATP增加了可以结合ATP的TRPV-ARDs的稳定性。对与人类遗传性疾病相关的大量TRPV4-ARD突变的生化分析表明,一些热稳定性受损,而另一些减弱了ATP结合能力,提示了该疾病的分子机制。

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