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A Spontaneous Translational Fusion of Bacillus cereus PlcR and PapR Activates Transcription of PlcR-Dependent Genes in Bacillus anthracis via Binding with a Specific Palindromic Sequence

机译:蜡样芽孢杆菌PlcR和PapR的自发翻译融合激活炭疽杆菌中PlcR依赖基因的转录通过与特定回文序列结合。

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摘要

Transformation of Bacillus anthracis with plasmid pUTE29-plcR-papR carrying the native Bacillus cereus plcR-papR gene cluster did not activate expression of B. anthracis hemolysin genes, even though these are expected to be responsive to activation by the global regulator PlcR. To further characterize the action of PlcR, we examined approximately 3,000 B. anthracis transformants containing pUTE29-plcR-papR and found a single hemolytic colony. The hemolytic strain contained a plasmid having a spontaneous plcR-papR intergenic region deletion. Transformation of the resulting plasmid pFP12, encoding a fused PlcR-PapR protein, into the nonhemolytic B. anthracis parental strain produced strong activation of B. anthracis hemolysins, including phosphatidylcholine-specific phospholipase C and sphingomyelinase. The fused PlcR-PapR protein present in a lysate of B. anthracis containing pFP12 bound strongly and specifically to the double-stranded palindrome 5′-TATGCATTATTTCATA-3′ that matches the consensus PlcR-binding site. In contrast, native PlcR protein in a lysate from a B. anthracis strain expressing large amounts of this protein did not demonstrate binding with the palindrome. The results suggest that the activation of PlcR by binding of a PapR pentapeptide as normally occurs in Bacillus thuringiensis and B. cereus can be mimicked by tethering the peptide to PlcR in a translational fusion, thereby obviating the need for PapR secretion, extracellular processing, retrieval into the bacterium, and binding with PlcR.
机译:用携带天然蜡状芽胞杆菌plcR-papR基因簇的质粒pUTE29-plcR-papR转化炭疽芽孢杆菌不会激活炭疽芽孢杆菌溶血素基因的表达,尽管预计它们会响应全局调节剂PlcR的激活。为了进一步表征PlcR的作用,我们检查了大约3,000个含有pUTE29-plcR-papR的炭疽芽孢杆菌转化体,并发现了一个溶血菌落。溶血菌株含有具有自发的plcR-papR基因间区域缺失的质粒。编码融合的PlcR-PapR蛋白的所得质粒pFP12转化为非溶血性炭疽杆菌亲本菌株后,炭疽芽孢杆菌溶血素(包括磷脂酰胆碱特异性磷脂酶C和鞘磷脂酶)被强烈激活。存在于含有pFP12的炭疽芽孢杆菌的裂解物中的融合的PlcR-PapR蛋白牢固且特异性地与匹配共有PlcR结合位点的双链回文5'-TATGCATTATTTCATA-3'结合。相反,来自炭疽芽孢杆菌菌株的裂解物中的天然PlcR蛋白表达大量这种蛋白,但未证明与回文结合。结果表明,通过与苏云金芽孢杆菌和蜡状芽孢杆菌正常发生的结合PapR五肽而激活PlcR可以通过在翻译融合物中将肽束缚到PlcR来模拟,从而消除了PapR分泌,细胞外加工,检索的需要进入细菌,并与PlcR结合。

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