首页> 美国卫生研究院文献>The Journal of Neuroscience >Rin a Neuron-Specific and Calmodulin-Binding Small G-Protein and Rit Define a Novel Subfamily of Ras Proteins
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Rin a Neuron-Specific and Calmodulin-Binding Small G-Protein and Rit Define a Novel Subfamily of Ras Proteins

机译:Rin一种神经元特异性和钙调蛋白结合的小G蛋白Rit定义了Ras蛋白的一个新的亚家族

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摘要

cDNAs encoding two novel 25 kDa Ras-like proteins, Rit and Rin, were isolated from mouse retina using a degenerate PCR-based cloning strategy. Using the expressed sequence tag database, human orthologs were also obtained and sequenced. The protein sequences of Rit and Rin, which are 64% identical, are more similar to each other than to any known Ras protein. Their closest homologs in the databases areMucor racemosus Ras2 and Ras3, to which they show ∼48% identity. Rit and Rin both bind GTP in vitro. An unusual feature of their structure is that they lack a known recognition signal for C-terminal lipidation, a modification that is generally necessary for plasma membrane association among the Ras subfamily of proteins. Nonetheless, transiently expressed Rit and Rin are plasma membrane-localized. Both proteins contain a C-terminal cluster of basic amino acids, which could provide a mechanism for membrane association. Deletion analysis suggested that this region is important for Rit membrane binding but is not necessary for Rin. Rit, like most Ras-related proteins, is ubiquitously expressed. Rin, however, is unusual in that it is expressed only in neurons. In addition, Rin binds calmodulin through a C-terminal binding motif. These results suggest that Rit and Rin define a novel subfamily of Ras-related proteins, perhaps using a new mechanism of membrane association, and that Rin may be involved in calcium-mediated signaling within neurons.
机译:使用基于简并PCR的克隆策略从小鼠视网膜中分离出编码两种新的25 kDa Ras样蛋白Rit和Rin的cDNA。使用表达的序列标签数据库,还获得了人类直系同源物并进行了测序。 Rit和Rin的蛋白质序列具有64%的同一性,彼此之间的相似性高于任何已知的Ras蛋白。它们在数据库中最接近的同源物是竞速种族Ras2和Ras3,它们显示出约48%的同一性。 Rit和Rin都在体外结合GTP。它们结构的不寻常特征是它们缺乏已知的C端脂化识别信号,这种修饰通常是蛋白质Ras家族之间质膜结合所必需的。但是,瞬时表达的Rit和Rin是质膜定位的。两种蛋白质都包含碱性氨基酸的C末端簇,这可以提供膜结合的机制。缺失分析表明该区域对于Rit膜结合很重要,但对于Rin不是必需的。像大多数与Ras相关的蛋白一样,Rit无处不在。然而,in是不寻常的,因为它仅在神经元中表达。另外,Rin通过C端结合基序结合钙调蛋白。这些结果表明,Rit和Rin可能使用一种新的膜缔合机制来定义Ras相关蛋白的新亚家族,并且Rin可能参与神经元内钙介导的信号传导。

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