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通过蛋白质晶体学确定的脂质与细菌反应中心之间的相互作用。

Interactions between lipids and bacterial reaction centers determined by protein crystallography.

作者信息

Camara-Artigas A, Brune D, Allen J P

机构信息

Department of Chemistry and Biochemistry and Center for the Study of Early Events in Photosynthesis, Arizona State University, Tempe, AZ 85287-1604, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Aug 20;99(17):11055-60. doi: 10.1073/pnas.162368399. Epub 2002 Aug 7.

Abstract

The structure of the reaction center from Rhodobacter sphaeroides has been solved by using x-ray diffraction at a 2.55-A resolution limit. Three lipid molecules that lie on the surface of the protein are resolved in the electron density maps. In addition to a cardiolipin that has previously been reported [McAuley, K. E., Fyfe, P. K., Ridge, J. P., Isaacs, N. W., Cogdell, R. J. & Jones, M. R. (1999) Proc. Natl. Acad. Sci. USA 96, 14706-14711], two other major lipids of the cell membrane are found, a phosphatidylcholine and a glucosylgalactosyl diacylglycerol. The presence of these three lipids has been confirmed by laser mass spectroscopy. The lipids are located in the hydrophobic region of the protein surface and interact predominately with hydrophobic amino acids, in particular aromatic residues. Although the cardiolipin is over 15 A from the cofactors, the other two lipids are in close contact with the cofactors and may contribute to the difference in energetics for the two branches of cofactors that is primarily responsible for the asymmetry of electron transfer. The glycolipid is 3.5 A from the active bacteriochlorophyll monomer and shields this cofactor from the solvent in contrast to a much greater exposed surface evident for the inactive bacteriochlorophyll monomer. The phosphate atom of phosphatidylcholine is 6.5 A from the inactive bacteriopheophytin, and the associated electrostatic interactions may contribute to electron transfer rates involving this cofactor. Overall, the lipids span a distance of approximately 30 A, which is consistent with a bilayer-like arrangement suggesting the presence of an "inner shell" of lipids around membrane proteins that is critical for membrane function.

摘要

利用X射线衍射在2.55埃的分辨率极限下解析了球形红杆菌反应中心的结构。在电子密度图中分辨出了位于蛋白质表面的三个脂质分子。除了先前已报道的一种心磷脂[麦考利,K.E.,菲菲,P.K.,里奇,J.P.,艾萨克斯,N.W.,科格德尔,R.J.和琼斯,M.R.(1999年)《美国国家科学院院刊》96,14706 - 14711]外,还发现了细胞膜的另外两种主要脂质,一种磷脂酰胆碱和一种葡萄糖基半乳糖基二酰甘油。这三种脂质的存在已通过激光质谱法得到证实。这些脂质位于蛋白质表面的疏水区域,主要与疏水氨基酸相互作用,特别是芳香族残基。虽然心磷脂与辅因子的距离超过15埃,但另外两种脂质与辅因子紧密接触,可能导致辅因子两个分支在能量学上的差异,这主要是电子转移不对称的原因。糖脂距离活性细菌叶绿素单体3.5埃,与无活性细菌叶绿素单体明显更大的暴露表面相比,它将该辅因子与溶剂隔离开来。磷脂酰胆碱的磷酸原子距离无活性细菌脱镁叶绿素6.5埃,相关的静电相互作用可能有助于涉及该辅因子的电子转移速率。总体而言,脂质跨越的距离约为30埃,这与双层样排列一致,表明膜蛋白周围存在一层对膜功能至关重要的脂质“内壳”。

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