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拟南芥KEA2是细菌KefC的同源物,编码一种带有叶绿体转运肽的K(+)/H(+)反向转运蛋白。

Arabidopsis KEA2, a homolog of bacterial KefC, encodes a K(+)/H(+) antiporter with a chloroplast transit peptide.

作者信息

Aranda-Sicilia María Nieves, Cagnac Olivier, Chanroj Salil, Sze Heven, Rodríguez-Rosales María Pilar, Venema Kees

机构信息

Dpto de Bioquímica, Consejo Superior de Investigaciones Científicas, Granada, Spain.

出版信息

Biochim Biophys Acta. 2012 Sep;1818(9):2362-71. doi: 10.1016/j.bbamem.2012.04.011. Epub 2012 Apr 21.

Abstract

KEA genes encode putative K(+) efflux antiporters that are predominantly found in algae and plants but are rare in metazoa; however, nothing is known about their functions in eukaryotic cells. Plant KEA proteins show homology to bacterial K(+) efflux (Kef) transporters, though two members in the Arabidopsis thaliana family, AtKEA1 and AtKEA2, have acquired an extra hydrophilic domain of over 500 residues at the amino terminus. We show that AtKEA2 is highly expressed in leaves, stems and flowers, but not in roots, and that an N-terminal peptide of the protein is targeted to chloroplasts in Arabidopsis cotyledons. The full-length AtKEA2 protein was inactive when expressed in yeast; however, a truncated AtKEA2 protein (AtsKEA2) lacking the N-terminal domain complemented disruption of the Na(+)(K(+))/H(+) antiporter Nhx1p to confer hygromycin resistance and tolerance to Na(+) or K(+) stress. To test transport activity, purified truncated AtKEA2 was reconstituted in proteoliposomes containing the fluorescent probe pyranine. Monovalent cations reduced an imposed pH gradient (acid inside) indicating AtsKEA2 mediated cation/H(+) exchange with preference for K(+)=Cs(+)>Li(+)>Na(+). When a conserved Asp(721) in transmembrane helix 6 that aligns to the cation binding Asp(164) of Escherichia coli NhaA was replaced with Ala, AtsKEA2 was completely inactivated. Mutation of a Glu(835) between transmembrane helix 8 and 9 in AtsKEA2 also resulted in loss of activity suggesting this region has a regulatory role. Thus, AtKEA2 represents the founding member of a novel group of eukaryote K(+)/H(+) antiporters that modulate monovalent cation and pH homeostasis in plant chloroplasts or plastids.

摘要

KEA基因编码假定的钾离子外流反向转运蛋白,主要存在于藻类和植物中,在后生动物中较为罕见;然而,关于它们在真核细胞中的功能却一无所知。植物KEA蛋白与细菌钾离子外流(Kef)转运蛋白具有同源性,尽管拟南芥家族中的两个成员AtKEA1和AtKEA2在氨基末端获得了一个超过500个残基的额外亲水区。我们发现AtKEA2在叶、茎和花中高度表达,但在根中不表达,并且该蛋白的N端肽靶向拟南芥子叶中的叶绿体。全长AtKEA2蛋白在酵母中表达时无活性;然而,缺少N端结构域的截短AtKEA2蛋白(AtsKEA2)补充了钠(钾)/氢反向转运蛋白Nhx1p的缺失,赋予了潮霉素抗性以及对钠或钾胁迫的耐受性。为了测试转运活性,将纯化的截短AtKEA2重组到含有荧光探针吡喃黄素的蛋白脂质体中。单价阳离子降低了施加的pH梯度(内部为酸性),表明AtsKEA2介导了阳离子/氢交换,对钾离子的偏好顺序为:钾离子=铯离子>锂离子>钠离子。当跨膜螺旋6中与大肠杆菌NhaA的阳离子结合天冬氨酸(Asp164)对齐的保守天冬氨酸(Asp721)被丙氨酸取代时,AtsKEA2完全失活。AtsKEA2中跨膜螺旋8和9之间的谷氨酸(Glu835)突变也导致活性丧失,表明该区域具有调节作用。因此,AtKEA2代表了一组新型真核生物钾离子/氢离子反向转运蛋白的创始成员,它们调节植物叶绿体或质体中的单价阳离子和pH稳态。

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