首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Multiple amphiphysin II splice variants display differential clathrin binding: identification of two distinct clathrin-binding sites.
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Multiple amphiphysin II splice variants display differential clathrin binding: identification of two distinct clathrin-binding sites.

机译:多个两性蛋白II剪接变体显示出不同的网格蛋白结合:鉴定两个不同的网格蛋白结合位点。

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摘要

Amphiphysin I and II are nerve terminal-enriched proteins that display src homology 3 domain-mediated interactions with dynamin and synaptojanin. It has been demonstrated that the amphiphysins also bind to clathrin, and we have proposed that this interaction may help to target synaptojanin and dynamin to sites of synaptic vesicle endocytosis. To understand better this potential functional role, we have begun to characterize clathrin-amphiphysin interactions. Using PCR from adult human cortex cDNA, we have cloned a number of amphiphysin II splice variants. In in vitro binding assays, the amphiphysin II splice variants display differential clathrin binding and define a 44-amino acid region mediating the interaction. Amphiphysin II truncation and deletion mutants identify two distinct clathrin-binding domains within this region: one with the sequence LLDLDFDP, the second with the sequence PWDLW. Both domains are conserved in amphiphysin I, and saturation binding analysis demonstrates that both sites bind clathrin with approximately equal affinity. The elucidation of clathrin as a splice-specific binding partner for amphiphysin II begins to address the potential functional role(s) for the multiple amphiphysin II splice variants and further supports an important function for clathrin-amphiphysin interactions in protein targeting during endocytosis.
机译:Amphiphysin I和II是富含神经末梢的蛋白质,显示src同源性3结构域介导的与动力蛋白和突触素的相互作用。已经证明两亲蛋白也结合网格蛋白,并且我们已经提出这种相互作用可以帮助将突触素和动力蛋白靶向突触囊泡内吞作用的位点。为了更好地理解这种潜在的功能性作用,我们已经开始表征网格蛋白-两性激素相互作用。使用来自成年人类皮质cDNA的PCR,我们已经克隆了许多双亲性II剪接变体。在体外结合测定中,两亲蛋白II剪接变体显示出不同的网格蛋白结合,并定义了介导相互作用的44个氨基酸区域。 Amphiphysin II截短和缺失突变体在该区域内识别出两个不同的网格蛋白结合结构域:一个具有序列LLDLDFDP,第二个具有序列PWDLW。两个结构域在两性菌素I中均是保守的,并且饱和结合分析表明两个位点以约相等的亲和力结合网格蛋白。阐明网格蛋白作为两性纤维蛋白II的剪接特异性结合伴侣开始解决多个两性纤维蛋白II剪接变体的潜在功能性作用,并进一步支持了网格蛋白-两性纤维蛋白相互作用在胞吞过程中靶向蛋白质的重要​​功能。

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