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网格蛋白(gephyrin)与微管的结合受其丝氨酸 270 位磷酸化的调节。

Binding of gephyrin to microtubules is regulated by its phosphorylation at Ser270.

机构信息

Department of Histology and Embryology, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People's Republic of China.

Department of Cellular and Molecular Biology, University of Medicine, Pharmacy, Science and Technology "G.E. Palade" of Târgu Mures, Târgu Mures, Romania.

出版信息

Histochem Cell Biol. 2021 Jul;156(1):5-18. doi: 10.1007/s00418-021-01973-2. Epub 2021 Apr 1.

Abstract

Gephyrin is a multifunctional scaffolding protein anchoring glycine- and subtypes of GABA type A- receptors at inhibitory postsynaptic membrane specializations by binding to the microtubule (MT) and/or the actin cytoskeleton. However, the conditions under which gephyrin can bind to MTs and its regulation are currently unknown. Here, we demonstrate that during the purification of MTs from rat brain by sedimentation of polymerized tubulin using high-speed centrifugation a fraction of gephyrin was bound to MTs, whereas gephyrin phosphorylated at the CDK5-dependent site Ser270 was detached from MTs and remained in the soluble protein fraction. Moreover, after collybistin fostered phosphorylation at Ser270 the binding of a recombinant gephyrin to MTs was strongly reduced in co-sedimentation assays. Correspondingly, upon substitution of wild-type gephyrin with recombinant gephyrin carrying alanine mutations at putative CDK5 phosphorylation sites the binding of gephyrin to MTs was increased. Furthermore, the analysis of cultured HEK293T and U2OS cells by immunofluorescence-microscopy disclosed a dispersed and punctuated endogenous gephyrin immunoreactivity co-localizing with MTs which was evidently not phosphorylated at Ser270. Thus, our study provides additional evidence for the binding of gephyrin to MTs in brain tissue and in in vitro cell systems. More importantly, our findings indicate that gephyrin-MT binding is restricted to a specific gephyrin fraction and depicts phosphorylation of gephyrin as a regulatory mechanism of this process by showing that soluble gephyrin detached from MTs can be detected specifically with the mAb7a antibody, which recognizes the Ser270 phosphorylated- version of gephyrin.

摘要

网格蛋白是一种多功能支架蛋白,通过与微管(MT)和/或肌动蛋白细胞骨架结合,将甘氨酸和 GABA 型 A 受体的亚型锚定在抑制性突触后膜特化部位。然而,网格蛋白结合 MT 的条件及其调控目前尚不清楚。在这里,我们证明了在使用高速离心通过聚合微管沉淀从大鼠脑中纯化 MT 时,一部分网格蛋白与 MT 结合,而磷酸化在 CDK5 依赖性位点 Ser270 的网格蛋白从 MT 上脱离并留在可溶性蛋白部分。此外,在用 collybistin 促进 Ser270 磷酸化后,重组网格蛋白与 MT 的共沉淀结合明显减少。相应地,在用携带 CDK5 磷酸化位点假定突变的重组网格蛋白替代野生型网格蛋白后,网格蛋白与 MT 的结合增加。此外,通过免疫荧光显微镜对培养的 HEK293T 和 U2OS 细胞进行分析,揭示了一种分散的、点状的内源性网格蛋白免疫反应性与 MT 共定位,明显未磷酸化 Ser270。因此,我们的研究为脑组织和体外细胞系统中网格蛋白与 MT 的结合提供了额外的证据。更重要的是,我们的发现表明,网格蛋白-MT 结合仅限于特定的网格蛋白部分,并通过显示可从 MT 上脱离的可溶性网格蛋白可以用 mAb7a 抗体特异性检测到,该抗体识别 Ser270 磷酸化的网格蛋白版本,表明磷酸化是该过程的调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b3e/8277605/02dd23dbad05/418_2021_1973_Fig1_HTML.jpg

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