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绘制驱动蛋白KIF5C的GRIF-1结合域图谱,证实了GRIF-1作为衔接蛋白在货物顺行运输中的作用。

Mapping the GRIF-1 binding domain of the kinesin, KIF5C, substantiates a role for GRIF-1 as an adaptor protein in the anterograde trafficking of cargoes.

作者信息

Smith Miriam J, Pozo Karine, Brickley Kieran, Stephenson F Anne

机构信息

Department of Pharmaceutical and Biological Chemistry, School of Pharmacy, University of London, 29/39 Brunswick Square, London WC1N 1AX, United Kingdom.

出版信息

J Biol Chem. 2006 Sep 15;281(37):27216-28. doi: 10.1074/jbc.M600522200. Epub 2006 Jul 11.

Abstract

Gamma-aminobutyric acid, type A (GABAA) receptor interacting factor-1 (GRIF-1) and N-acetylglucosamine transferase interacting protein (OIP) 106 are both members of a newly identified coiled-coil family of proteins. They are kinesin-associated proteins proposed to function as adaptors in the anterograde trafficking of organelles to synapses. Here we have studied in more detail the interaction between the prototypic kinesin heavy chain, KIF5C, kinesin light chain, and GRIF-1. The GRIF-1 binding site of KIF5C was mapped using truncation constructs in yeast two-hybrid interaction assays, co-immunoprecipitations, and co-localization studies following expression in mammalian cells. Using these approaches, it was shown that GRIF-1 and the KIF5C binding domain of GRIF-1, GRIF-1-(124-283), associated with the KIF5C non-motor domain. Refined studies using yeast two-hybrid interactions and co-immunoprecipitations showed that GRIF-1 and GRIF-1-(124-283) associated with the cargo binding region within the KIF5C non-motor domain. Substantiation that the GRIF-1-KIF5C interaction was direct was shown by fluorescence resonance energy transfer analyses using fluorescently tagged GRIF-1 and KIF5C constructs. A significant fluorescence resonance energy transfer value was found between the C-terminal EYFP-tagged KIF5C and ECFP-GRIF-1, the C-terminal EYFP-tagged KIF5C non-motor domain and ECFP-GRIF-1, but not between the N-terminal EYFP-tagged KIF5C nor the EYFP-KIF5C motor domain and ECFP-GRIF-1, thus confirming direct association between the two proteins at the KIF5C C-terminal and GRIF-1 N-terminal regions. Co-immunoprecipitation and confocal imaging strategies further showed that GRIF-1 can bind to the tetrameric kinesin light-chain/kinesin heavy-chain complex. These findings support a role for GRIF-1 as a kinesin adaptor molecule requisite for the anterograde delivery of defined cargoes such as mitochondria and/or vesicles incorporating beta2 subunit-containing GABAA receptors, in the brain.

摘要

γ-氨基丁酸A型(GABAA)受体相互作用因子-1(GRIF-1)和N-乙酰葡糖胺转移酶相互作用蛋白(OIP)106都是新鉴定的卷曲螺旋蛋白家族的成员。它们是驱动蛋白相关蛋白,被认为在细胞器向突触的顺行运输中作为衔接子发挥作用。在此,我们更详细地研究了原型驱动蛋白重链KIF5C、驱动蛋白轻链和GRIF-1之间的相互作用。利用酵母双杂交相互作用分析中的截短构建体、共免疫沉淀以及在哺乳动物细胞中表达后的共定位研究,绘制了KIF5C的GRIF-1结合位点。使用这些方法表明,GRIF-1以及GRIF-1的KIF5C结合结构域GRIF-1-(124 - 283)与KIF5C的非运动结构域相关。使用酵母双杂交相互作用和共免疫沉淀的精细研究表明,GRIF-1和GRIF-1-(124 - 283)与KIF5C非运动结构域内的货物结合区域相关。使用荧光标记的GRIF-1和KIF5C构建体进行的荧光共振能量转移分析表明,GRIF-1与KIF5C的相互作用是直接的。在C末端EYFP标记的KIF5C与ECFP-GRIF-1之间、C末端EYFP标记的KIF5C非运动结构域与ECFP-GRIF-1之间发现了显著的荧光共振能量转移值,但在N末端EYFP标记的KIF5C以及EYFP-KIF5C运动结构域与ECFP-GRIF-1之间未发现,从而证实了这两种蛋白在KIF5C C末端和GRIF-1 N末端区域之间的直接关联。共免疫沉淀和共聚焦成像策略进一步表明,GRIF-1可以与四聚体驱动蛋白轻链/驱动蛋白重链复合物结合。这些发现支持GRIF-1作为一种驱动蛋白衔接子分子的作用,它是在大脑中顺行递送特定货物(如线粒体和/或包含含β2亚基的GABAA受体的囊泡)所必需的。

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