首页> 美国卫生研究院文献>The Journal of Neuroscience >Novel SCAMPs Lacking NPF Repeats: Ubiquitous and Synaptic Vesicle-Specific Forms Implicate SCAMPs in Multiple Membrane-Trafficking Functions
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Novel SCAMPs Lacking NPF Repeats: Ubiquitous and Synaptic Vesicle-Specific Forms Implicate SCAMPs in Multiple Membrane-Trafficking Functions

机译:缺乏NPF重复的新型SCAMP:无处不在和突触囊泡的特定形式牵涉多个膜转运功能中的SCAMP。

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摘要

In vertebrates, secretory carrier membrane proteins (SCAMPs) 1–3 constitute a family of putative membrane-trafficking proteins composed of cytoplasmic N-terminal sequences with NPF repeats, four central transmembrane regions (TMRs), and a cytoplasmic tail. SCAMPs probably function in endocytosis by recruiting EH-domain proteins to the N-terminal NPF repeats but may have additional functions mediated by their other sequences. We now demonstrate that SCAMPs form a much larger and more heterogeneous protein family than envisioned previously, with an evolutionary conservation extending to invertebrates and plants. Two novel vertebrate SCAMPs (SCAMPs 4 and 5), single SCAMP genes in Caenorhabditis elegans andDrosophila melanogaster, and multiple SCAMPs inArabidopsis thaliana were identified. Interestingly, the novel SCAMPs 4 and 5 lack the N-terminal NPF repeats that are highly conserved in all other SCAMPs. RNA and Western blotting experiments showed that SCAMPs 1–4 are ubiquitously coexpressed, whereas SCAMP 5 is only detectable in brain where it is expressed late in development coincident with the elaboration of mature synapses. Immunocytochemistry revealed that SCAMP 5 exhibits a synaptic localization, and subcellular fractionations demonstrated that SCAMP 5 is highly enriched in synaptic vesicles. Our studies characterize SCAMPs as a heterogeneous family of putative trafficking proteins composed of three isoforms that are primarily synthesized outside of neurons (SCAMPs 2–4), one isoform that is ubiquitously expressed but highly concentrated on synaptic vesicles (SCAMP 1), and one brain-specific isoform primarily localized to synaptic vesicles (SCAMP 5). The conservation of the TMRs in all SCAMPs with the variable presence of N-terminal NPF repeats suggests that in addition to the role of some SCAMPs in endocytosis mediated by their NPF repeats, all SCAMPs perform a “core” function in membrane traffic mediated by their TMRs.
机译:在脊椎动物中,分泌性载体膜蛋白(SCAMP)1-3构成了一个假定的膜运输蛋白家族,该蛋白由具有NPF重复序列的胞质N末端序列,四个中央跨膜区(TMR)和胞质尾组成。 SCAMPs可能通过将EH结构域蛋白募集到N末端NPF重复序列而在胞吞作用中发挥作用,但可能具有其他序列介导的其他功能。现在,我们证明SCAMPs形成的蛋白质家族比以前设想的要大得多,并且异质性更高,进化保守性扩展到无脊椎动物和植物。确定了两个新的脊椎动物SCAMP(SCAMP 4和5),秀丽隐杆线虫和黑腹果蝇中的单个SCAMP基因,以及拟南芥中的多个SCAMP。有趣的是,新型SCAMP 4和5缺少在所有其他SCAMP中高度保守的N末端NPF重复序列。 RNA和Western印迹实验表明,SCAMP 1–4普遍共表达,而SCAMP 5仅在大脑中可检测到,在发育后期与成熟突触的形成同时表达。免疫细胞化学显示SCAMP 5呈现突触定位,亚细胞分级显示SCAMP 5在突触小泡中高度富集。我们的研究将SCAMPs表征为推测的运输蛋白的异质家族,该蛋白由三种主要在神经元外部合成的同工型(SCAMPs2-4),一种普遍表达但高度集中在突触囊泡(SCAMP 1)上的同工型和一个大脑组成特异性同工型主要位于突触小泡(SCAMP 5)。 N末端NPF重复序列存在差异的所有SCAMP中,TMR的保守性表明,除了某些SCAMP在其NPF重复序列介导的内吞作用中的作用外,所有SCAMP在其介导的膜运输中起“核心”功能TMR。

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