个性化文献订阅>期刊> Structure
 

The Transmembrane Protein KpOmpA Anchoring the Outer Membrane of Klebsiella pneumoniae Unfolds and Refolds in Response to Tensile Load

  作者 Bosshart, PD; Iordanov, I; Garzon-Coral, C; Demange, P; Engel, A; Milon, A; Muller, DJ  
  选自 期刊  Structure;  卷期  2012年20-1;  页码  121-127  
  关联知识点  
 

[摘要]In Klebsiella pneumoniae the transmembrane beta-barrel forming outer membrane protein KpOmpA mediates adhesion to a wide range of immune effector cells, thereby promoting respiratory tract and urinary infections. As major transmembrane protein OmpA stabilizes Gram-negative bacteria by anchoring their outer membrane to the peptidoglycan layer. Adhesion, osmotic pressure, hydrodynamic flow, and structural deformation apply mechanical stress to the bacterium. This stress can generate tensile load to the peptidoglycan-binding domain (PGBD) of KpOmpA. To investigate how KpOmpA reacts to mechanical stress, we applied a tensile load to the PGBD and observed a detailed unfolding pathway of the transmembrane beta-barrel. Each step of the unfolding pathway extended the polypeptide connecting the bacterial outer membrane to the peptidoglycan layer and absorbed mechanical energy. After relieving the tensile load, KpOmpA reversibly refolded back into the membrane. These results suggest that bacteria may reversibly unfold transmembrane proteins in response to mechanical stress.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内