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神经甾体孕烯醇酮可逆转因功能性CDKL5-IQGAP1复合物缺失而导致的微管紊乱。

The neurosteroid pregnenolone reverts microtubule derangement induced by the loss of a functional CDKL5-IQGAP1 complex.

作者信息

Barbiero Isabella, Peroni Diana, Tramarin Marco, Chandola Chetan, Rusconi Laura, Landsberger Nicoletta, Kilstrup-Nielsen Charlotte

机构信息

Department of Biotechnology and Life Sciences and Center of Neuroscience, University of Insubria, 21052 Busto Arsizio, Italy.

Department of Medical Biotechnology and Translational Medicine, University of Milan, 20129 Milan, Italy.

出版信息

Hum Mol Genet. 2017 Sep 15;26(18):3520-3530. doi: 10.1093/hmg/ddx237.

Abstract

CDKL5 is a protein kinase that plays a key role for neuronal functions as testified by the onset of complex neuronal dysfunctions in patients with genetic lesions in CDKL5. Here we identify a novel interactor of CDKL5, IQGAP1, a fundamental regulator of cell migration and polarity. In accordance with a functional role of this interaction, depletion of CDKL5 impairs cell migration and impedes the localization of IQGAP1 at the leading edge. Moreover, we demonstrate that CDKL5 is required for IQGAP1 to form a functional complex with its effectors, Rac1 and the microtubule plus end tracking protein CLIP170. These defects eventually impact on the microtubule association of CLIP170, thus deranging their dynamics. CLIP170 is a cellular target of the neurosteroid pregnenolone; by blocking CLIP170 in its active conformation, pregnenolone is capable of restoring the microtubule association of CLIP170 in CDKL5 deficient cells and rescuing morphological defects in neurons devoid of CDKL5. These findings provide novel insights into CDKL5 functions and pave the way for target-specific therapeutic strategies for individuals affected with CDKL5-disorder.

摘要

CDKL5是一种蛋白激酶,在神经元功能中起关键作用,这一点已被CDKL5基因损伤患者出现的复杂神经元功能障碍所证实。在此,我们鉴定出CDKL5的一种新型相互作用蛋白IQGAP1,它是细胞迁移和极性的重要调节因子。鉴于这种相互作用的功能作用,CDKL5的缺失会损害细胞迁移,并阻碍IQGAP1在前缘的定位。此外,我们证明CDKL5是IQGAP1与其效应分子Rac1和微管正端追踪蛋白CLIP170形成功能复合物所必需的。这些缺陷最终会影响CLIP170与微管的结合,从而扰乱其动力学。CLIP170是神经甾体孕烯醇酮的细胞靶点;通过阻断处于活性构象的CLIP170,孕烯醇酮能够恢复CLIP170在CDKL5缺陷细胞中的微管结合,并挽救缺乏CDKL5的神经元中的形态缺陷。这些发现为CDKL5的功能提供了新的见解,并为受CDKL5障碍影响的个体的靶向治疗策略铺平了道路。

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