Cloward Jason M, Krause Duncan C
Department of Microbiology, University of Georgia, Athens, GA 30602, USA.
Mol Microbiol. 2010 Jul 1;77(1):158-69. doi: 10.1111/j.1365-2958.2010.07196.x. Epub 2010 May 12.
Colonization of conducting airways of humans by the prokaryote Mycoplasma pneumoniae is mediated by a differentiated terminal organelle important in cytadherence, gliding motility and cell division. TopJ is a predicted J-domain co-chaperone also having domains unique to mycoplasma terminal organelle proteins and is essential for terminal organelle function, as well as stabilization of protein P24, which is required for normal initiation of terminal organelle formation. J-domains activate the ATPase of DnaK chaperones, facilitating peptide binding and proper protein folding. We performed mutational analysis of the predicted J-domain, central acidic and proline-rich (APR) domain, and C-terminal domain of TopJ and assessed the phenotypic consequences when introduced into an M. pneumoniae topJ mutant. A TopJ derivative with amino acid substitutions in the canonical J-domain histidine-proline-aspartic acid motif restored P24 levels but not normal motility, morphology or cytadherence, consistent with a J-domain co-chaperone function. In contrast, TopJ derivatives having APR or C-terminal domain deletions were less stable and failed to restore P24, but resulted in normal morphology, intermediate gliding motility and cytadherence levels exceeding that of wild-type cells. Results from immunofluorescence microscopy suggest that both the APR and C-terminal domains, but not the histidine-proline-aspartic acid motif, are critical for TopJ localization to the terminal organelle.
原核生物肺炎支原体对人类呼吸道的定殖是由一种分化的末端细胞器介导的,该细胞器在细胞粘附、滑行运动和细胞分裂中起重要作用。TopJ是一种预测的J结构域共伴侣蛋白,也具有支原体末端细胞器蛋白特有的结构域,对末端细胞器功能以及蛋白P24的稳定至关重要,而蛋白P24是末端细胞器正常形成起始所必需的。J结构域激活DnaK伴侣蛋白的ATP酶,促进肽结合和蛋白质正确折叠。我们对TopJ的预测J结构域、中央酸性和富含脯氨酸(APR)结构域以及C末端结构域进行了突变分析,并评估了将其导入肺炎支原体topJ突变体后的表型后果。在典型J结构域组氨酸-脯氨酸-天冬氨酸基序中具有氨基酸取代的TopJ衍生物恢复了P24水平,但未恢复正常运动性、形态或细胞粘附,这与J结构域共伴侣蛋白功能一致。相比之下,具有APR或C末端结构域缺失的TopJ衍生物稳定性较差,未能恢复P24,但导致正常形态、中等滑行运动性和超过野生型细胞的细胞粘附水平。免疫荧光显微镜检查结果表明,APR和C末端结构域而非组氨酸-脯氨酸-天冬氨酸基序对于TopJ定位于末端细胞器至关重要。