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Functional analysis of secA homologues from rickettsiae

机译:来自Rickettiae的Seca同源物的功能分析

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The molecular basis of protein secretion that underlines rickettsial pathogenesis remains unknown. This paper reports the molecular and functional analysis of the putative secA gene, an essential component of the Sec-dependent protein secretion pathway, from Rickettsia rickettsii and Rickettsia typhi, the aetiological agents of Rocky Mountain spotted fever and murine typhus, respectively. The sequence analysis of the cloned secA genes from R. rickettsii and R. typhi show ORFs of 2721 and 2718?nt, respectively. Alignment of the deduced amino acid sequences reveals the presence of highly conserved amino acid residues and motifs considered to be essential for the ATPase activity of SecA in preprotein translocation. Transcription analysis indicates that R. rickettsii secA is expressed monocistronically from the canonical prokaryotic promoter, with a transcriptional start point located 32?nt upstream of the secA initiation codon. Complementation analysis shows that the full-length SecA protein from R. rickettsii and R. typhi fails to restore growth of the temperature-sensitive Escherichia coli strain MM52 secA51(ts) at a non-permissive temperature (42?°C), despite the detection of SecA protein expression by Western blotting. However, the chimeric SecA protein carrying the N-terminal 408?aa of R. rickettsii SecA fused with the C-terminal 480?aa of E. coli SecA restores the growth of E. coli strain MM52 secA51(ts) at the non-permissive temperature (42?°C). These results suggest that the N-terminal ATPase domain is highly conserved, whereas the C-terminal domain appears to be species specific.
机译:蛋白质分泌的分子基础提出了rickettial发病机制仍然未知。本文报道了诸如Rickettsia Rickettsii和Rickettsia Typhi的Sec依赖性蛋白质分泌途径的必要组分分别的分子和功能分析,分别是岩石山发现热和鼠动脉氏菌的Aetiologicatorology Gents。 R.Rickettsii和R.Typhi的克隆Seca基因的序列分析分别为2721和2718Ω·NT的ORF。所推导的氨基酸序列的对准显示出高度保守的氨基酸残基的存在,并且认为是SECA在预蛋白易位中的ATP酶活性必需的基序。转录分析表明R.Rickettsii Seca从规范原核促进剂中单向表达,转录起始点位于SECA引发密码子上游的32℃。互补分析表明,尽管如此蛋白质印迹检测Seca蛋白表达。然而,携带N末端408的嵌合Seca蛋白携带R.Rickettsii Seca的AA与C末端480融合了大肠杆菌Seca的AA恢复了非 - Coli菌株MM52 SECA51(TS)的生长允许温度(42°C)。这些结果表明N末端ATP酶结构域高度保守,而C末端域似乎是特定的物种。

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