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A naturally occurring mutation K220T in the pleiotropic activator PrfA of Listeria monocytogenes results in a loss of virulence due to decreasing DNA-binding affinity

机译:由于DNA结合亲和力降低,李斯特菌单核细胞增生的抗嗜碱活化剂PRFA中的天然存在的突变K220T导致毒力丧失

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The sequencing of prfA, encoding the transcriptional regulator of virulence genes, in 26 low-virulence field Listeria monocytogenes strains showed that eight strains exhibited the same single amino-acid substitution: PrfAK220T. These strains exhibited no expression of PrfA-regulated proteins and thus no virulence. This substitution inactivated PrfA, since expression of the PrfAK220T mutant gene in an EGDΔprfA strain did not restore the haemolytic and phosphatidylcholine phospholipase C activities, in contrast to the wild-type prfA gene. The substitution of the lysine at position 220 occurred in the helix αH. However, the data showed that the PrfAK220T protein is dimerized just as well as its wild-type counterpart, but does not bind to PrfA-boxes. PrfAK220T did not form a PrfA–DNA complex in electrophoretic mobility shift assays, but low concentrations of CI complexes (PrfAK220T–RNA polymerase–DNA complex) were formed by adding RNA polymerase, suggesting that PrfA interacted with RNA polymerase in solution in the absence of DNA. Formation of some transcriptionally active complexes was confirmed by in vitro runoff transcription assays and quantitative RT-PCR. Crystallographic analyses described the structure of native PrfA and highlighted the key role of allosteric changes in the activity of PrfA and especially the role of the Lys220 in the conformation of the helix–turn–helix (HTH) motif.
机译:PRFA的测序,编码毒力基因的转录调节剂,在26个低毒力场李比特毒素单核细胞增强菌株中表明,8个菌株表现出相同的单氨基酸替代:PRFAK220T。这些菌株表现出PRFA调节蛋白的表达,因此没有毒力。这种替代的PRFA,由于EGDΔPRFA菌株中PRFAK220T突变基因的表达不恢复溶血和磷脂酰胆碱磷脂酶C活性,与野生型PRFA基因相反。将赖氨酸的取代在220处发生在螺旋αh中。然而,数据显示,PRFAK220T蛋白质与其野生型对应物相同,但不与PRFA盒结合。 Pr法达220T在电泳迁移率偏移测定中没有形成PRFA-DNA复合物,但通过添加RNA聚合酶形成低浓度的CI络合物(PRFAK220T-RNA聚合酶-DNA复合物),表明PRFA在溶液中与RNA聚合酶与RNA聚合酶相互作用脱氧核糖核酸。通过体外径流转录测定和定量RT-PCR确认一些转录活性复合物的形成。结晶分析描述了天然PRFA的结构,并突出了PRFA活性变化的关键作用,尤其是Lys220在螺旋转螺旋(HTH)基序的构象中的作用。

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