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TRPV4 在骨细胞谱系中表达,人类 TRPV4-R616Q 突变导致 Brachyolmia,表明其与胆固醇“失去相互作用”。

TRPV4 expresses in bone cell lineages and TRPV4-R616Q mutant causing Brachyolmia in human reveals "loss-of-interaction" with cholesterol.

机构信息

School of Biological Sciences, National Institute of Science Education and Research, HBNI, Khordha, Jatni, Odisha, 752050, India; Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai, 400094, India.

School of Biological Sciences, National Institute of Science Education and Research, HBNI, Khordha, Jatni, Odisha, 752050, India; Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai, 400094, India.

出版信息

Biochem Biophys Res Commun. 2019 Oct 1;517(4):566-574. doi: 10.1016/j.bbrc.2019.07.042. Epub 2019 Aug 3.

Abstract

Transient receptor potential Vanilloid ion channel sub type 4 (TRPV4) is involved in complex Ca-signaling. At least one copy of TRPV4 is present in all vertebrates and is involved in several physiological processes including sensory process and point mutations in TRPV4 leads to development of different pathophysiological disorders in human. R616Q mutant of TRPV4 has been referred as "gain-of-function" mutant causing abnormality in bone cells and develop pathophysiological condition known as "Brachyolmia". In this work, we demonstrated that R616Q mutation is located in a very critical position of TRPV4 containing a cholesterol-binding motif sequence which is highly conserved in all vertebrates. Accordingly, TRPV4-Wt but not the TRPV4-R616Q localizes preferably in cholesterol-enriched lipid rafts in osteogenic cell line Saos2 and in DRG-neuron derived F11 cell line. Further, FRAP experiment suggest TRPV4-Wt but not the TRPV4-R616Q mutant is more mobile especially in cholesterol-reduced lipid membrane. GST-tagged TM4-Loop-TM5 fragment containing TRPV4-Wt but not R616Q sequence interacts with cholesterol, forms high-molecular weight complex and also show band shift in SDS-PAGE. TRPV4 is expressed in Mesenchymal stem cells and the localization of TRPV4 in lipid raft is dependent on temperature and cholesterol. Our data suggests that TRPV4-R616Q mutant behaves as a "loss-of-interaction" with cholesterol.

摘要

瞬时受体电位香草素离子通道亚型 4(TRPV4)参与复杂的钙信号转导。所有脊椎动物中至少存在一个 TRPV4 拷贝,参与多种生理过程,包括感觉过程,TRPV4 的点突变导致人类出现不同的病理生理紊乱。TRPV4 的 R616Q 突变体被称为“功能获得”突变体,导致骨细胞异常,并发展为已知的“短肢畸形”的病理生理状况。在这项工作中,我们证明 R616Q 突变位于 TRPV4 的一个非常关键的位置,包含一个胆固醇结合基序序列,该序列在所有脊椎动物中高度保守。因此,TRPV4-Wt 而不是 TRPV4-R616Q 优先定位于成骨细胞系 Saos2 和源自 DRG 神经元的 F11 细胞系中的富含胆固醇的脂筏中。此外,FRAP 实验表明,TRPV4-Wt 而不是 TRPV4-R616Q 突变体更具流动性,特别是在胆固醇减少的脂膜中。含有 TRPV4-Wt 但不含 R616Q 序列的 GST 标记的 TM4 环-TM5 片段与胆固醇相互作用,形成高分子量复合物,并在 SDS-PAGE 中显示带位移。TRPV4 在间充质干细胞中表达,TRPV4 在脂筏中的定位依赖于温度和胆固醇。我们的数据表明,TRPV4-R616Q 突变体与胆固醇的相互作用“丧失”。

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