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首页> 外文期刊>BMC Evolutionary Biology >Conservation of the TRAPPII-specific subunits of a Ypt/Rab exchanger complex
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Conservation of the TRAPPII-specific subunits of a Ypt/Rab exchanger complex

机译:Ypt / Rab交换复合体的TRAPPII特定亚基的保守。

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Background Ypt/Rab GTPases and their GEF activators regulate intra-cellular trafficking in all eukaryotic cells. In S. cerivisiae, the modular TRAPP complex acts as a GEF for the Golgi gatekeepers: Ypt1 and the functional pair Ypt31/32. While TRAPPI, which acts in early Golgi, is conserved from fungi to animals, not much is known about TRAPPII, which acts in late Golgi and consists of TRAPPI plus three additional subunits. Results Here, we show a phylogenetic analysis of the three TRAPPII-specific subunits. One copy of each of the two essential subunits, Trs120 and Trs130, is present in almost every fully sequenced eukaryotic genome. Moreover, the primary, as well as the predicted secondary, structure of the Trs120- and Trs130-related sequences are conserved from fungi to animals. The mammalian orthologs of Trs120 and Trs130, NIBP and TMEM1, respectively, are candidates for human disorders. Currently, NIBP is implicated in signaling, and TMEM1 is suggested to have trans-membrane domains (TMDs) and to function as a membrane channel. However, we show here that the yeast Trs130 does not function as a trans-membrane protein, and the human TMEM1 does not contain putative TMDs. The non-essential subunit, Trs65, is conserved only among many fungi and some unicellular eukaryotes. Multiple alignment analysis of each TRAPPII-specific subunit revealed conserved domains that include highly conserved amino acids. Conclusion We suggest that the function of both NIBP and TMEM1 in the regulation of intra-cellular trafficking is conserved from yeast to man. The conserved domains and amino acids discovered here can be used for functional analysis that should help to resolve the differences in the assigned functions of these proteins in fungi and animals.
机译:背景Ypt / Rab GTPases及其GEF激活剂调节所有真核细胞的细胞内运输。在酿酒酵母中,模块化TRAPP复合体可充当高尔基网守的GEF:Ypt1和功能对Ypt31 / 32。尽管在高尔基早期起作用的TRAPPI从真菌到动物都是保守的,但对于在高尔基晚期起作用的TRAPPII知之甚少,它由TRAPPI加上三个其他亚基组成。结果在这里,我们显示了三个TRAPPII特异性亚基的系统发育分析。几乎每个完全测序的真核基因组中都存在两个必需亚基Trs120和Trs130的一个拷贝。而且,从真菌到动物,Trs120-和Trs130-相关序列的一级结构以及预测的二级结构均是保守的。 Trs120和Trs130,NIBP和TMEM1的哺乳动物直系同源基因分别是人类疾病的候选基因。当前,NIBP与信号传导有关,并且建议TMEM1具有跨膜结构域(TMD)并起膜通道的作用。但是,我们在这里显示,酵母Trs130不能作为跨膜蛋白起作用,而人TMEM1不包含推定的TMD。非必需亚基Trs65仅在许多真菌和某些单细胞真核生物中保守。每个TRAPPII特异性亚基的多重比对分析揭示了保守结构域,其中包括高度保守的氨基酸。结论我们认为NIBP和TMEM1在调节细胞内运输中的功能从酵母到人都是保守的。此处发现的保守结构域和氨基酸可用于功能分析,这应有助于解决真菌和动物中这些蛋白质分配功能的差异。

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