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Possible function and some properties of the CcpA protein of Bacillus subtilis

机译:可能的功能和枯草芽孢杆菌CCPA蛋白的功能和一些性质

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The ccpA mutations alsA1 (alsA1 is allelic to ccpA) and ccpA::Tn917 completely abolished catabolite repression of gluconate kinase and sorbitol dehydrogenase synthesis in Bacillus subtilis, whereas they only partially affected the catabolite repression of inositol dehydrogenase, histidase and xylose isomerase synthesis. The alsA1 mutation also partially affected catabolite repression of sporulation. Analysis of revertants from the alsA1 mutant by direct sequencing indicated that this mutation comprises a base substitution of guanine at nucleotide 鈭?4 to adenine within the Shine-Dalgarno sequence of the ccpA gene (ccpA translation starts at nucleotide +1). A 1.37 kb EcoRI fragment carrying the ccpA gene was cloned into Escherichia coli plasmid pUC19 and B. subtilis plasmid pUB110, resulting it plasmids pCCPA19 and pCCPA110, respectively. The ccpA gene carried in pCCPA110 complemented the alsA1 mutation. Western blotting revealed that the level of the CcpA protein in B. subtilis cells, which seemed to be constitutively synthesized, was approximately 10 times lower for the alsA1 mutant than for the wild-type. The CcpA protein synthesized by either E. coli cells bearing pCCPA19 or B. subtilis cells bearing pCCPA110 was purified to over 90% homogeneity; the latter cells were grown in the presence of glucose The molecular mass of the protein purified from E. coli was 74 kDa, suggesting that this protein exists as a dimer because its subunit molecular mass was 38 kDa as determined by SDS-PAGE. Gel retardation analysis indicated that the purified CcpA protein in both cases did not bind to the cis sequence for catabolite repression of the gnt operon, but it bound non-specifically to DNA.
机译:CCPA突变Alsa1(Alsa1是CCPA的等位基因)和CCPA :: TN917完全废除了芽孢杆菌植物芽孢杆菌和山梨糖醇脱氢酶合成的分解代谢物抑制,而它们仅部分影响肌醇脱氢酶,组织和木糖异构酶合成的抗粘土抑制。 Alsa1突变也部分影响了孢子症的分子抑制。通过直接测序对来自Alsa1突变体的回复剂的分析表明,该突变包括在CCPA基因的Shine-Dalgarno序列中核苷酸在核苷酸的基础取代核苷酸,在CCPA基因的Shine-dalgarno序列中(CCPA翻译在核苷酸+1开始)。将携带CCPA基因的1.37kb EcoRI片段克隆到大肠杆菌质粒puc19和B.枯草芽孢杆菌质粒pub110中,得到其质粒pccpa19和pccpa110。 PCCPA110中携带的CCPA基因补充了AlSA1突变。 Western印迹显示,似乎组成植物细胞中CCPA蛋白的水平似乎组成的枯草芽孢杆菌细胞比野生型为约10倍。通过将PCCPA19或B的大肠杆菌细胞合成的CCPA蛋白为亚芽孢杆菌细胞合成,亚芽孢杆菌细胞均为超过90%的均匀性;后一种细胞在葡萄糖存在下生长,从大肠杆菌纯化的蛋白质的分子量为74kDa,表明该蛋白质作为二聚体存在,因为其亚基分子量为38kDa,如SDS-PAGE测定。凝胶延迟分析表明,两种情况下的纯化的CCPA蛋白没有与GNT操纵子的CIS序列结合,但它与DNA无特异性。

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