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Functional characterization of amphipathic α-helix in the osmoregulatory ABC transporter OpuA

机译:渗透调节性ABC转运蛋白OpuA中两亲性α-螺旋的功能表征

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摘要

The ATP-binding-cassette transporter OpuA from Lactococcus lactis is composed of two ATPase subunits (OpuAA) and two subunits (OpuABC) with the transmembrane domain fused to an extracellular substrate-binding protein. Of the almost 1900 homologues of OpuA known to date, a subset has an amino-terminal amphipathic helix (plus extra transmembrane segment) fused to the core of the transmembrane domain of the OpuABC subunit. FRET measurements indicate that the amphipathic α-helix is located close to the membrane surface, where its hydrophobic face interacts with the transport protein rather than the membrane lipids. Next, we determined the functional role of this accessory region by engineering the amphipathic α-helix. We analyzed the consequence of the mutations in intact cells by monitoring growth and transport of glycine betaine under normal and osmotic stress conditions. More detailed studies were performed in hybrid membrane vesicles, proteoliposomes, and bilayer nanodisks. We show that the amphipathic α-helix of OpuA is necessary for high activity of OpuA but is not critical for the biogenesis of the protein or the ionic regulation of transport.
机译:乳酸乳球菌的ATP结合盒式转运蛋白OpuA由两个ATPase亚基(OpuAA)和两个亚基(OpuABC)组成,跨膜结构域与细胞外底物结合蛋白融合。迄今已知的近1900种OpuA同源物中,有一个亚基具有氨基末端的两亲性螺旋(加上额外的跨膜片段),融合到OpuABC亚基的跨膜结构域的核心。 FRET测量表明,两亲性α-螺旋位于膜表面附近,其疏水面与转运蛋白而不是膜脂质相互作用。接下来,我们通过工程化两亲性α-螺旋来确定该辅助区域的功能作用。我们通过监测甘氨酸甜菜碱在正常和渗透胁迫条件下的生长和运输,分析了完整细胞中突变的结果。在杂化膜囊泡,蛋白脂质体和双层纳米盘中进行了更详细的研究。我们显示,OpuA的两亲性α-螺旋对于OpuA的高活性是必需的,但对于蛋白质的生物合成或运输的离子调节而言并不关键。

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