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家族 2(DHA2)的药物:H⁺载体、铁载体转运蛋白(ARN)和谷胱甘肽:H⁺载体(GEX)在半子囊菌酵母中有共同的进化起源。

The drug:H⁺ antiporters of family 2 (DHA2), siderophore transporters (ARN) and glutathione:H⁺ antiporters (GEX) have a common evolutionary origin in hemiascomycete yeasts.

机构信息

IBB - Institute for Biotechnology and Bioengineering, Centre for Biological and Chemical Engineering, Instituto Superior Técnico, Universidade de Lisboa, Av, Rovisco Pais, 1049-001, Lisboa, Portugal.

出版信息

BMC Genomics. 2013 Dec 18;14:901. doi: 10.1186/1471-2164-14-901.

Abstract

BACKGROUND

The Saccharomyces cerevisiae 14-spanner Drug:H+ Antiporter family 2 (DHA2) are transporters of the Major Facilitator Superfamily (MFS) involved in multidrug resistance (MDR). Although poorly characterized, DHA2 family members were found to participate in the export of structurally and functionally unrelated compounds or in the uptake of amino acids into the vacuole or the cell. In S. cerevisiae, the four ARN/SIT family members encode siderophore transporters and the two GEX family members encode glutathione extrusion pumps. The evolutionary history of DHA2, ARN and GEX genes, encoding 14-spanner MFS transporters, is reconstructed in this study.

RESULTS

The translated ORFs of 31 strains from 25 hemiascomycetous species, including 10 pathogenic Candida species, were compared using a local sequence similarity algorithm. The constraining and traversing of a network representing the pairwise similarity data gathered 355 full size proteins and retrieved ARN and GEX family members together with DHA2 transporters, suggesting the existence of a close phylogenetic relationship among these 14-spanner major facilitators. Gene neighbourhood analysis was combined with tree construction methodologies to reconstruct their evolutionary history and 7 DHA2 gene lineages, 5 ARN gene lineages, and 1 GEX gene lineage, were identified. The S. cerevisiae DHA2 proteins Sge1, Azr1, Vba3 and Vba5 co-clustered in a large phylogenetic branch, the ATR1 and YMR279C genes were proposed to be paralogs formed during the Whole Genome Duplication (WGD) whereas the closely related ORF YOR378W resides in its own lineage. Homologs of S. cerevisiae DHA2 vacuolar proteins Vba1, Vba2 and Vba4 occur widespread in the Hemiascomycetes. Arn1/Arn2 homologs were only found in species belonging to the Saccharomyces complex and are more abundant in the pre-WGD species. Arn4 homologs were only found in sub-telomeric regions of species belonging to the Sacharomyces sensu strictu group (SSSG). Arn3 type siderophore transporters are abundant in the Hemiascomycetes and form an ancient gene lineage extending to the filamentous fungi.

CONCLUSIONS

The evolutionary history of DHA2, ARN and GEX genes was reconstructed and a common evolutionary root shared by the encoded proteins is hypothesized. A new protein family, denominated DAG, is proposed to span these three phylogenetic subfamilies of 14-spanner MFS transporters.

摘要

背景

酿酒酵母 14 叶旋木马酸:H+ 反转运蛋白家族 2(DHA2)是多药耐药(MDR)相关的主要易化子超家族(MFS)的转运蛋白。尽管特征描述较差,但发现 DHA2 家族成员参与了结构和功能上无关的化合物的外排,或者参与了氨基酸进入液泡或细胞的摄取。在酿酒酵母中,四个 ARN/SIT 家族成员编码铁载体转运蛋白,两个 GEX 家族成员编码谷胱甘肽外排泵。本研究重建了编码 14 叶旋木马酸 MFS 转运蛋白的 DHA2、ARN 和 GEX 基因的进化历史。

结果

使用局部序列相似性算法比较了来自 25 个半子囊菌属物种的 31 株菌株的翻译 ORF。包括 10 种致病性念珠菌。网络的约束和遍历表示收集的成对相似性数据,共检索到 355 个全长蛋白,并检索到 ARN 和 GEX 家族成员以及 DHA2 转运蛋白,表明这些 14 叶主要易化剂之间存在密切的系统发育关系。基因邻域分析与树构建方法相结合,重建了它们的进化历史,鉴定了 7 个 DHA2 基因谱系、5 个 ARN 基因谱系和 1 个 GEX 基因谱系。酿酒酵母 DHA2 蛋白 Sge1、Azr1、Vba3 和 Vba5 在一个大的系统发育分支中聚类,ATR1 和 YMR279C 基因被提议是在全基因组复制(WGD)期间形成的旁系同源基因,而密切相关的 ORF YOR378W 则位于其自身谱系中。酿酒酵母 DHA2 液泡蛋白 Vba1、Vba2 和 Vba4 的同源物广泛存在于半子囊菌属中。Arn1/Arn2 同源物仅在属于酿酒酵母复合体的物种中发现,并且在 WGD 前的物种中更为丰富。Arn4 同源物仅在属于严格意义上的酿酒酵母组(SSSG)的物种的亚端粒区发现。Arn3 型铁载体转运蛋白在半子囊菌属中丰富,并形成一个古老的基因谱系,延伸到丝状真菌。

结论

重建了 DHA2、ARN 和 GEX 基因的进化历史,并假设编码蛋白共享共同的进化根源。提出了一个新的蛋白质家族,命名为 DAG,跨越这三个 14 叶 MFS 转运蛋白的系统发育亚家族。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b87/3890622/9be17a456ce5/1471-2164-14-901-1.jpg

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