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艰难梭菌发芽受体 CspC 对胆汁酸的识别对于建立感染很重要。

Bile acid recognition by the Clostridium difficile germinant receptor, CspC, is important for establishing infection.

机构信息

Department of Biology, Texas A&M University, College Station, Texas, United States of America.

出版信息

PLoS Pathog. 2013 May;9(5):e1003356. doi: 10.1371/journal.ppat.1003356. Epub 2013 May 9.

Abstract

Clostridium difficile spores must germinate in vivo to become actively growing bacteria in order to produce the toxins that are necessary for disease. C. difficile spores germinate in vitro in response to certain bile acids and glycine. In other sporulating bacteria, proteins embedded within the inner membrane of the spore sense the presence of germinants and trigger the release of Ca⁺⁺-dipicolinic acid (Ca⁺⁺-DPA) from the spore core and subsequent hydrolysis of the spore cortex, a specialized peptidoglycan. Based upon homology searches of known germinant receptors from other spore-forming bacteria, C. difficile likely uses unique mechanisms to recognize germinants. Here, we identify the germination-specific protease, CspC, as the C. difficile bile acid germinant receptor and show that bile acid-mediated germination is important for establishing C. difficile disease in the hamster model of infection. These results highlight the importance of bile acids in triggering in vivo germination and provide the first description of a C. difficile spore germinant receptor. Blocking the interaction of bile acids with the C. difficile spore may represent an attractive target for novel therapeutics.

摘要

艰难梭菌孢子必须在体内发芽才能成为活跃生长的细菌,从而产生疾病所需的毒素。艰难梭菌孢子在体外对某些胆汁酸和甘氨酸作出反应而发芽。在其他产孢子细菌中,嵌入孢子内膜内的蛋白质感知发芽剂的存在,并触发从孢子核心释放出钙联二吡啶酸(Ca⁺⁺-DPA),以及随后水解孢子皮质,一种特殊的肽聚糖。根据来自其他产孢子细菌的已知发芽剂受体的同源性搜索,艰难梭菌可能使用独特的机制来识别发芽剂。在这里,我们确定了发芽特异性蛋白酶 CspC 是艰难梭菌胆汁酸发芽剂受体,并表明胆汁酸介导的发芽对于在仓鼠感染模型中建立艰难梭菌疾病很重要。这些结果强调了胆汁酸在触发体内发芽中的重要性,并首次描述了艰难梭菌孢子的发芽剂受体。阻断胆汁酸与艰难梭菌孢子的相互作用可能是新型治疗方法的一个有吸引力的靶点。

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