首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Membrane insertion stabilizes the structure of TrwB, the R388 conjugative plasmid coupling protein.
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Membrane insertion stabilizes the structure of TrwB, the R388 conjugative plasmid coupling protein.

机译:膜插入可稳定TrwB(R388偶联质粒偶联蛋白)的结构。

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摘要

TrwB is an integral membrane protein that plays a crucial role in the conjugative process of plasmid R388. We have recently shown [Vecino et al., Biochim. Biophys. Acta 1798(11), 2160-2169 (2010)] that TrwB can be reconstituted into liposomes, and that bilayer incorporation increases its affinity for nucleotides and its specificity for ATP. In the present contribution we examine the structural effects of membrane insertion on TrwB, by comparing the protein in reconstituted form and in the form of protein/lipid/detergent mixed micelles. TrwB was reconstituted in PE:PG:CL (76.3:19.6:4.1mol ratio) with a final 99:1 lipid:protein mol ratio. This lipid mixture is intended to mimic the bacterial inner membrane composition, and allows a more efficient reconstitution than other lipid mixtures tested. The studies have been carried out mainly using infrared spectroscopy, because this technique provides simultaneously information on both the lipid and protein membrane components. Membrane reconstitution of TrwB is accompanied by a decrease in beta-sheet contents and an increase in beta-strand structures, probably related to protein-protein contacts in the bilayer. The predominant alpha-helical component remains unchanged. The bilayer-embedded protein becomes thermally more stable, and also more resistant to trypsin digestion. The properties of the bilayer lipids are also modified in the presence of TrwB, the phospholipid acyl chains are slightly ordered, and the phosphate groups at the interface become more accessible to water. In addition, we observe that the protein thermal denaturation affects the lipid thermal transition profile.
机译:TrwB是一种完整的膜蛋白,在质粒R388的结合过程中起关键作用。我们最近显示了[Vecino等人,Biochim。生物物理学。 Acta 1798(11),2160-2169(2010)]认为TrwB可重构为脂质体,并且双层结合增加了其对核苷酸的亲和力和对ATP的特异性。在目前的贡献中,我们通过比较重组形式的蛋白质和蛋白质/脂质/洗涤剂混合胶束形式的蛋白质,检查了膜插入对TrwB的结构影响。 TrwB以PE:PG:CL(76.3:19.6:4.1摩尔比)重构,最终脂质:蛋白质摩尔比为99:1。该脂质混合物旨在模拟细菌内膜成分,并且比其他测试的脂质混合物更有效地重构。由于该技术同时提供有关脂质和蛋白质膜成分的信息,因此主要使用红外光谱进行了研究。 TrwB的膜重构伴随着β-折叠含量的减少和β-链结构的增加,这可能与双层中的蛋白质-蛋白质接触有关。主要的α-螺旋成分保持不变。双层包埋的蛋白质在热方面变得更稳定,并且对胰蛋白酶的消化也更具抵抗力。在TrwB存在的情况下,双层脂质的特性也得到了修饰,磷脂酰基链略微有序,并且界面处的磷酸基更易与水接触。此外,我们观察到蛋白质的热变性会影响脂质的热转变曲线。

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