...
首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >A novel OmpY porin from Yersinia pseudotuberculosis: structure, channel-forming activity and trimer thermal stability.
【24h】

A novel OmpY porin from Yersinia pseudotuberculosis: structure, channel-forming activity and trimer thermal stability.

机译:一种来自假结核耶尔森氏菌的新型OmpY孔蛋白:结构,通道形成活性和三聚体热稳定性。

获取原文
获取原文并翻译 | 示例

摘要

A novel OmpY porin was predicted based on the Yersinia pseudotuberculosis genome analysis. Whereas it has the different genomic annotation such as "outer membrane protein N" (ABS46310.1) in str. IP 31758 or "outer membrane protein C2, porin" (YP_070481.1) in str. IP32953, it might be warranted to rename the OmpN/OmpC2 to OmpY, "outer membrane protein Y", where letter "Y" pertained to Yersinia. Both phylogenetic analysis and genomic localization clearly support that the OmpY porin belongs to a new group of general bacterial porins. The recombinant OmpY protein with its signal sequence was overexpressed in porin-deficient Escherichia coli strain. The mature rOmpY was shown to insert into outer membrane as a trimer. The OmpY porin, isolated from the outer membrane, was studied employing spectroscopic, electrophoretic and bilayer lipid membranes techniques. The far UV CD spectrum of rOmpY was essentially identical to that of Y. pseudotuberculosis OmpF. The near UV CD spectrum of rOmpY was weaker and smoother than that of OmpF. The rOmpY single-channel conductance was 180 +/- 20 pS in 0.1 M NaCl and was lower than that of the OmpF porin. As was shown by electrophoretic and bilayer lipid membrane experiments, the rOmpY trimers were less thermostable than the OmpF trimers. The porins differed in the trimer-monomer transition temperature by about 20 degrees C. The three-dimensional structural models of the Y. pseudotuberculosis OmpY and OmpF trimers were generated and the intra- and intermonomeric interactions stabilizing the porins were investigated. The difference in the thermal stability of OmpY and OmpF trimers was established to correlate with the difference in intermonomeric polar contacts.
机译:基于耶尔森氏菌假结核耶尔森氏菌基因组分析预测了一种新型的OmpY孔蛋白。而它在str中具有不同的基因组注释,例如“外膜蛋白N”(ABS46310.1)。 IP 31758或“外膜蛋白C2,孔蛋白”(YP_070481.1)在str中。 IP32953,可能需要将OmpN / OmpC2重命名为OmpY,即“外膜蛋白Y”,其中字母“ Y”是耶尔森氏菌。系统发育分析和基因组定位均明确支持OmpY孔蛋白属于一类新的普通细菌孔蛋白。重组OmpY蛋白及其信号序列在孔蛋白缺陷型大肠杆菌菌株中过表达。成熟的rOmpY被显示为插入三聚体的外膜。从外膜中分离出的OmpY孔蛋白,采用光谱,电泳和双层脂质膜技术进行了研究。 rOmpY的远紫外CD光谱与假结核耶尔森氏菌OmpF的光谱基本相同。 rOmpY的近紫外CD光谱比OmpF的弱和平滑。在0.1 M NaCl中,rOmpY单通道电导为180 +/- 20 pS,低于OmpF孔蛋白的电导率。如电泳和双层脂质膜实验所示,rOmpY三聚体的热稳定性低于OmpF三聚体。孔蛋白的三聚体单体转变温度相差约20℃。产生了假结核耶尔森氏菌OmpY和OmpF三聚物的三维结构模型,并研究了稳定孔蛋白的单体间和单体间相互作用。建立了OmpY和OmpF三聚体的热稳定性差异,以与单体间极性接触的差异相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号