Kraus A, Hillen W
Lehrstuhl für Mikrobiologie, Friedrick-Alexander Universität Erlangen-Nümberg, FRG.
FEMS Microbiol Lett. 1997 Aug 1;153(1):221-6. doi: 10.1111/j.1574-6968.1997.tb10485.x.
Five mutations in ccpA of Bacillus megaterium with impaired functions were analysed for carbon catabolite repression. The phenotypes support the hypothesis that CcpA assumes a PurR/LacI fold. The completely inactive mutants CcpA119GE and CcpA326am cause alterations which are incompatible with that fold. A mutation with reduced activity, CcpA81GE, affects a site that would be partially surface exposed and may interfere with structure formation or cofactor binding. A mutation in the putative hinge alpha-helix, CcpA52AE, is negative transdominant over wild-type ccpA. The mutant CcpA38am is inactive, although reduced amounts of wild-type size protein are produced.
分析了巨大芽孢杆菌中5个功能受损的ccpA突变体的碳代谢物阻遏情况。这些表型支持了CcpA具有PurR/LacI折叠结构的假说。完全无活性的突变体CcpA119GE和CcpA326am引起的变化与该折叠结构不兼容。活性降低的突变体CcpA81GE影响一个部分暴露于表面的位点,可能会干扰结构形成或辅因子结合。假定的铰链α-螺旋中的一个突变体CcpA52AE对野生型ccpA呈负反式显性。突变体CcpA38am无活性,尽管产生的野生型大小的蛋白质数量减少。