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Protein determinants of phage T4 lysis inhibition

机译:噬菌体T4裂解抑制的蛋白质决定因素

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Genetic studies have established that lysis inhibition in bacteriophage T4 infections occurs when the RI antiholin inhibits the lethal hole-forming function of the T holin. The T-holin is composed of a single N-terminal transmembrane domain and a ~20 kDa periplasmic domain. It accumulates harmlessly throughout the bacteriophage infection cycle until suddenly causing permeabilization of the inner membrane, thereby initiating lysis. The RI antiholin has a SAR domain that directs its secretion to the periplasm, where it can either be inactivated and degraded or be activated as a specific inhibitor of T. Previously, it was shown that the interaction of the soluble domains of these two proteins within the periplasm was necessary for lysis inhibition. We have purified and characterized the periplasmic domains of both T and RI. Both proteins were purified in a modified host that allows disulfide bond formation in the cytoplasm, due to the functional requirement of conserved disulfide bonds. Analytical centrifugation and circular dichroism spectroscopy showed that RI was monomeric and exhibited ~80% alpha-helical content. In contrast, T exhibited a propensity to oligomerize and precipitate at high concentrations. Incubation of RI with T inhibits this aggregation and results in a complex of equimolar T and RI content. Although gel filtration analysis indicated a complex mass of 45 kDa, intermediate between the predicted 30 kDa heterodimer and 60 kDa heterotetramer, sedimentation velocity analysis indicated that the predominant species is the former. These results suggest that RI binding to T is necessary and sufficient for lysis inhibition.
机译:遗传学研究已经确定,当RI抗holin抑制T holin的致死孔形成功能时,就会在T4噬菌体感染中产生抑制裂解作用。 T-holin由一个N端跨膜结构域和一个约20 kDa的周质结构域组成。它在整个噬菌体感染周期中无害地积累,直到突然引起内膜的透化作用,从而开始裂解。 RI抗holin具有一个SAR结构域,该结构域将其分泌引导至周质,在该结构域中,它可以失活和降解,也可以作为T的特异性抑制剂被激活。以前,已证明这两种蛋白的可溶性结构域之间的相互作用周质是抑制裂解所必需的。我们已经纯化并表征了T和RI的周质结构域。由于保守的二硫键的功能要求,两种蛋白质均在修饰的宿主中纯化,该宿主允许在细胞质中形成二硫键。离心分析和圆二色谱分析表明,RI为单体,α-螺旋含量约80%。相反,T在高浓度下表现出低聚和沉淀的倾向。 RI与T的孵育抑制了这种聚集,并导致了等摩尔的T和RI含量的复合物。尽管凝胶过滤分析表明复合物质量为45 kDa,介于预测的30 kDa异二聚体和60 kDa异四聚体之间,但沉降速度分析表明主要物质是前者。这些结果表明,RI与T的结合对于裂解抑制是必要和充分的。

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