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Cyclic di-GMP binding by an assembly ATPase (PilB2) and control of type IV pilin polymerization in the Gram-positive pathogen Clostridium perfringens

Journal of Bacteriology. 2017; 
William A. Hendrick, Mona W. Orr, Samantha R. Murray, Vincent T. Lee, Stephen B. Melville
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Peptide Synthesis Rabbit polyclonal antibodies (GenScript, Inc.) were produced against synthetic peptides from PilA2, PilB2, and PilC2. Get A Quote

摘要

The Gram-positive pathogen Clostridium perfringens possesses type IV pili (TFP), which are extracellular fibers that are polymerized from a pool of pilin monomers in the cytoplasmic membrane. Two proteins that are essential for pilus functions are an assembly ATPase (PilB) and an inner membrane core protein (PilC). Two homologues each of PilB and PilC are present in C. perfringens, called PilB1/PilB2 and PilC1/PilC2, respectively, along with four pilin proteins, PilA1 to PilA4. The gene encoding PilA2, which is considered the major pilin based on previous studies, is immediately downstream of the pilB2 and pilC2 genes. Purified PilB2 had ATPase activity, bound zinc, formed hexamers even in the absence of ATP, a... More

关键词

type IV pili,ATPase,molecular motor,bacterial pathogenesis,cyclic di-GM,Pprotein-protein interaction