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梅毒螺旋体罕见外膜蛋白:通过冷冻断裂电子显微镜分析其迁移率

Treponema pallidum rare outer membrane proteins: analysis of mobility by freeze-fracture electron microscopy.

作者信息

Bourell K W, Schulz W, Norgard M V, Radolf J D

机构信息

Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas 75235.

出版信息

J Bacteriol. 1994 Mar;176(6):1598-608. doi: 10.1128/jb.176.6.1598-1608.1994.

Abstract

Freeze-fracture and deep-etch electron microscopy were used to investigate the molecular architecture of the Treponema pallidum outer membrane (OM). Freeze-fracture electron microscopy of treponemes freshly harvested from rabbit testes revealed that the intramembranous particles (IMPs) in both the concave and convex OM leaflets were distributed into alternating areas of relatively high and low particle density; in many OM fractures, IMPs formed rows that ran either parallel to or obliquely across the fracture faces. Statistical analysis (runs test) confirmed that the IMPs were nonrandomly distributed in both OM leaflets. Examination of deep-etched specimens revealed that the particles observed in freeze-fractured OMs also were surface exposed. Combined analysis of deep-etched and cross-fractured treponemes revealed that the OM particles were located in regions of the OM away from the endoflagella and closely apposed to the cytoplasmic membrane-peptidoglycan complex. When treponemes were incubated for extended periods with heat-inactivated immune rabbit syphilitic serum, no alteration in the distribution of OM IMPs was detected. In further experiments, approximately 1:1 mixtures of T. pallidum and Escherichia coli or separate suspensions of the nonpathogenic Treponema phagedenis biotype Reiter were fixed at 34 degrees C or after cooling to 0 degree C (to induce lateral phase separations that would aggregate IMPs). Only particles in the T. pallidum OM failed to aggregate in cells fixed at the lower temperature. The combined data suggest that the mobility of T. pallidum rare OM proteins is limited, perhaps as a result of interactions between their periplasmic domains and components of the peptidoglycan-cytoplasmic membrane complex.

摘要

采用冷冻断裂和深度蚀刻电子显微镜技术研究梅毒螺旋体外膜(OM)的分子结构。对从兔睾丸中新鲜收获的螺旋体进行冷冻断裂电子显微镜观察发现,OM内小叶和外小叶中的膜内颗粒(IMPs)分布于颗粒密度相对较高和较低的交替区域;在许多OM断裂处,IMPs形成平行于或斜穿断裂面的行。统计分析(游程检验)证实,IMPs在两个OM小叶中均呈非随机分布。对深度蚀刻标本的检查显示,在冷冻断裂的OM中观察到的颗粒也暴露于表面。对深度蚀刻和交叉断裂的螺旋体进行联合分析发现,OM颗粒位于OM中远离内鞭毛且紧邻细胞质膜-肽聚糖复合物的区域。当螺旋体与热灭活的免疫兔梅毒血清长时间孵育时,未检测到OM IMPs分布的改变。在进一步的实验中,将梅毒螺旋体与大肠杆菌按约1:1的比例混合或单独悬浮非致病性噬菌性密螺旋体生物型赖特,在34℃或冷却至0℃后固定(以诱导侧向相分离从而聚集IMPs)。只有梅毒螺旋体OM中的颗粒在较低温度下固定的细胞中未能聚集。综合数据表明,梅毒螺旋体稀有OM蛋白的流动性受到限制,这可能是其周质结构域与肽聚糖-细胞质膜复合物成分之间相互作用的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/080c/205244/2f5da1660c96/jbacter00024-0058-a.jpg

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