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水蚤的ABC转运蛋白基因家族。

The ABC transporter gene family of Daphnia pulex.

作者信息

Sturm Armin, Cunningham Phil, Dean Michael

机构信息

Institute of Aquaculture, University of Stirling, Stirling, UK.

出版信息

BMC Genomics. 2009 Apr 21;10:170. doi: 10.1186/1471-2164-10-170.

Abstract

BACKGROUND

The large gene superfamily of ABC (ATP-binding cassette) transporters encodes membrane proteins involved in trafficking processes across biological membranes and further essential cell biological functions. ABC transporters are evolutionary ancient and involved in the biochemical defence against toxicants. We report here a genome-wide survey of ABC proteins of Daphnia pulex, providing for the first time information on ABC proteins in crustacea, a primarily aquatic arthropod subphylum of high ecological and economical importance.

RESULTS

We identified 64 ABC proteins in the Daphnia genome, which possesses members of all current ABC subfamilies A to H. To unravel phylogenetic relationships, ABC proteins of Daphnia were compared to those from yeast, worm, fruit fly and human. A high conservation of Daphnia of ABC transporters was observed for proteins involved in fundamental cellular processes, including the mitochondrial half transporters of the ABCB subfamily, which function in iron metabolism and transport of Fe/S protein precursors, and the members of subfamilies ABCD, ABCE and ABCF, which have roles in very long chain fatty acid transport, initiation of gene transcription and protein translation, respectively. A number of Daphnia proteins showed one-to-one orthologous relationships to Drosophila ABC proteins including the sulfonyl urea receptor (SUR), the ecdysone transporter ET23, and the eye pigment precursor transporter scarlet. As the fruit fly, Daphnia lacked homologues to the TAP protein, which plays a role in antigene processing, and the cystic fibrosis transmembrane conductance regulator (CFTR), which functions as a chloride channel. Daphnia showed two proteins homologous to MDR (multidrug resistance) P-glycoproteins (ABCB subfamily) and six proteins homologous to MRPs (multidrug resistance-associated proteins) (ABCC subfamily). However, lineage specific gene duplications in the ABCB and ABCC subfamilies complicated the inference of function. A particularly high number of gene duplications were observed in the ABCG and ABCH subfamilies, which have 23 and 15 members, respectively.

CONCLUSION

The in silico characterisation of ABC transporters in the Daphnia pulex genome revealed that the complement of ABC transporters is as complex in crustaceans as that other metazoans. Not surprisingly, among currently available genomes, Daphnia ABC transporters most closely resemble those of the fruit fly, another arthropod.

摘要

背景

ABC(ATP结合盒)转运蛋白的大型基因超家族编码参与跨生物膜运输过程以及其他基本细胞生物学功能的膜蛋白。ABC转运蛋白在进化上很古老,参与对毒物的生化防御。我们在此报告对水蚤ABC蛋白的全基因组调查,首次提供了关于甲壳纲动物ABC蛋白的信息,甲壳纲是一个具有高度生态和经济重要性的主要水生节肢动物亚门。

结果

我们在水蚤基因组中鉴定出64种ABC蛋白,其拥有当前所有ABC亚家族A至H的成员。为了解析系统发育关系,将水蚤的ABC蛋白与酵母、线虫、果蝇和人类的ABC蛋白进行了比较。观察到水蚤的ABC转运蛋白在参与基本细胞过程的蛋白方面具有高度保守性,包括ABCB亚家族的线粒体半转运蛋白,其在铁代谢和Fe/S蛋白前体的运输中起作用,以及ABCD、ABCE和ABCF亚家族的成员,它们分别在极长链脂肪酸运输、基因转录起始和蛋白质翻译中起作用。许多水蚤蛋白与果蝇ABC蛋白呈现一对一的直系同源关系,包括磺酰脲受体(SUR)、蜕皮激素转运蛋白ET23和眼色素前体转运蛋白猩红色。与果蝇一样,水蚤缺乏在抗原加工中起作用的TAP蛋白以及作为氯离子通道发挥功能的囊性纤维化跨膜传导调节因子(CFTR)的同源物。水蚤显示出两种与多药耐药(MDR)P-糖蛋白(ABCB亚家族)同源的蛋白和六种与多药耐药相关蛋白(MRP)(ABCC亚家族)同源的蛋白。然而,ABCB和ABCC亚家族中的谱系特异性基因复制使功能推断变得复杂。在ABCG和ABCH亚家族中观察到特别多的基因复制,它们分别有23个和15个成员。

结论

水蚤基因组中ABC转运蛋白的计算机模拟特征表明,甲壳纲动物中ABC转运蛋白的组成与其他后生动物一样复杂。不出所料,在目前可用的基因组中,水蚤的ABC转运蛋白与另一种节肢动物果蝇的ABC转运蛋白最为相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/341b/2680897/42cee0c5fadc/1471-2164-10-170-1.jpg

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