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分离的细菌脂多糖的高度有序状态及其对外膜渗透屏障特性的可能贡献。

High state of order of isolated bacterial lipopolysaccharide and its possible contribution to the permeation barrier property of the outer membrane.

作者信息

Labischinski H, Barnickel G, Bradaczek H, Naumann D, Rietschel E T, Giesbrecht P

出版信息

J Bacteriol. 1985 Apr;162(1):9-20. doi: 10.1128/jb.162.1.9-20.1985.

Abstract

The conformational properties of the isolated S form of Salmonella sp. lipopolysaccharide (LPS), of Re mutant LPS, and of free lipid A were investigated by using X-ray diffraction and conformational energy calculations. The data obtained showed that LPS in a dried, in a hydrated, and probably also in an aqueous dispersion state is capable of forming bilayered lamellar arrangements similar to phospholipids. From the bilayer packing periodicities, a geometrical model of the extensions of the LPS regions lipid A, 2-keto-3-deoxyoctulosonic acid, and O-specific chain along the membrane normal could be calculated. Furthermore, the lipid A component was found to assume a remarkably high ordered conformation: its fatty acid chains were tightly packed in a dense hexagonal lattice with a center-to-center distance of 0.49 nm. The hydrophilic backbone of lipid A showed a strong tendency to form domains in the membrane, resulting in a more or less parallel arrangement of lipid A units. According to model calculations, the hydrophilic backbone of lipid A appears to be oriented approximately 45 degrees to the membrane surface, which would lead to a shed roof-like appearance of the surface structure in the indentations of which the 2-keto-3-deoxyoctulosonic acid moiety would fit. In contrast, the O-specific chains assume a low ordered, heavily coiled conformation. Comparison of these structural properties with those known for natural phospholipids in biological membranes indicates that the high state of order of the lipid A portion of LPS might be an important factor in the structural role and permeation barrier functions of LPS in the outer membrane of gram-negative bacteria.

摘要

通过X射线衍射和构象能量计算,研究了鼠伤寒沙门氏菌脂多糖(LPS)的分离S型、Re突变体LPS以及游离脂质A的构象特性。所获得的数据表明,处于干燥、水合以及可能的水分散状态的LPS能够形成类似于磷脂的双层片状排列。根据双层堆积周期,可以计算出LPS区域脂质A、2-酮-3-脱氧辛酸和O-特异性链沿膜法线方向的延伸几何模型。此外,发现脂质A成分呈现出非常高的有序构象:其脂肪酸链紧密堆积在中心距为0.49 nm的致密六边形晶格中。脂质A的亲水性主链在膜中显示出强烈的形成结构域的趋势,导致脂质A单元或多或少呈平行排列。根据模型计算,脂质A的亲水性主链似乎与膜表面成约45度角取向,这将导致表面结构呈现出棚顶状外观,其中2-酮-3-脱氧辛酸部分将适合于凹陷处。相比之下,O-特异性链呈现出低有序、高度卷曲的构象。将这些结构特性与生物膜中天然磷脂的已知特性进行比较表明,LPS脂质A部分的高有序状态可能是LPS在革兰氏阴性菌外膜中的结构作用和渗透屏障功能的一个重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f80/218945/2f2e856b877e/jbacter00221-0021-a.jpg

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