首页> 外文期刊>Marine biotechnology >LexA Binds to Transcription Regulatory Site of Cell Division Gene Emphasis Type='Italic'>ftsZ/Emphasis> in Toxic Cyanobacterium Emphasis Type='Italic'>Microcystis aeruginosa/Emphasis>
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LexA Binds to Transcription Regulatory Site of Cell Division Gene Emphasis Type='Italic'>ftsZ/Emphasis> in Toxic Cyanobacterium Emphasis Type='Italic'>Microcystis aeruginosa/Emphasis>

机译:Lexa与细胞分裂基因的转录调节部位结合。强调型=“斜体”> FTSZ& /重点>在有毒的蓝色细胞中。强调型=“斜体”>微囊杆菌铜绿假单胞菌& /重点>

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摘要

Previously, we showed that DNA replication and cell division in toxic cyanobacterium Microcystis aeruginosa are coordinated by transcriptional regulation of cell division gene ftsZ and that an unknown protein specifically bound upstream of ftsZ (BpFz; DNA-binding protein to an upstream site of ftsZ ) during successful DNA replication and cell division. Here, we purified BpFz from M. aeruginosa strain NIES-298 using DNA-affinity chromatography and gel-slicing combined with gel electrophoresis mobility shift assay (EMSA). The N-terminal amino acid sequence of BpFz was identified as TNLESLTQ, which was identical to that of transcription repressor LexA from NIES-843. EMSA analysis using mutant probes showed that the sequence GTACTAN~(3)GTGTTC was important in LexA binding. Comparison of the upstream regions of lexA in the genomes of closely related cyanobacteria suggested that the sequence TASTRNNNNTGTWC could be a putative LexA recognition sequence (LexA box). Searches for TASTRNNNNTGTWC as a transcriptional regulatory site (TRS) in the genome of M. aeruginosa NIES-843 showed that it was present in genes involved in cell division, photosynthesis, and extracellular polysaccharide biosynthesis. Considering that BpFz binds to the TRS of ftsZ during normal cell division, LexA may function as a transcriptional activator of genes related to cell reproduction in M. aeruginosa , including ftsZ . This may be an example of informality in the control of bacterial cell division.
机译:以前,我们表明,在细胞分裂基因FTSZ的转录调节和特异性结合FTSZ(BPFZ; DNA结合蛋白到FTSZ的上游部位的未知蛋白质,DNA复制和细胞分裂是协调的成功的DNA复制和细胞分裂。在此,我们使用DNA - 亲和色谱法纯化来自M. Aerginosa菌株Nies-298的BPFZ和凝胶电泳迁移率移位测定(EMSA)结合凝胶切片。将BPFZ的N-末端氨基酸序列鉴定为TNLESLTQ,其与NIES-843的转录抑制剂Lexa相同。使用突变探针的EMSA分析表明,序列Gtactan〜(3)GTGTTC在Lexa结合中很重要。 Lexa在密切相关蓝藻基因组中的上游区域的比较表明,Tastrnnnntgtwc的序列可以是推定的Lexa识别序列(Lexa Box)。在铜绿假单胞菌Nies-843的基因组中搜索Tastrnnntgtwc作为转录调节部位(TRS)表明它存在于参与细胞分裂,光合作用和细胞外多糖生物合成的基因中。考虑到BPFZ在正常细胞分裂期间与FTSZ的TRS结合,Lexa可以用作与M.铜绿假单胞菌的细胞繁殖相关的基因的转录激活剂,包括FTSZ。这可能是对细菌细胞分裂控制的非正式性的一个例子。

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