首页> 外文期刊>Journal of bacteriology >Function and Redundancy of the Chaplin Cell Surface Proteins in Aerial Hypha Formation, Rodlet Assembly, and Viability in Streptomyces coelicolor
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Function and Redundancy of the Chaplin Cell Surface Proteins in Aerial Hypha Formation, Rodlet Assembly, and Viability in Streptomyces coelicolor

机译:卓别林细胞表面蛋白在空中菌丝形成,杆状细胞组装和天蓝色链霉菌生存力中的功能和冗余。

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The chaplins are a family of eight secreted proteins that are critical for raising aerial hyphae in Streptomyces coelicolor. These eight chaplins can be separated into two main groups: the long chaplins (ChpA to -C) and the short chaplins (ChpD to -H). The short chaplins can be further subdivided on the basis of their abilities to form intramolecular disulfide bonds: ChpD, -F, -G, and -H contain two Cys residues, while ChpE has none. A “minimal chaplin strain” containing only chpC, chpE, and chpH was constructed and was found to raise a substantial aerial mycelium. This strain was used to examine the roles of specific chaplins. Within this strain, the Cys-containing ChpH was identified as the major polymerization unit contributing to aerial hypha formation and assembly of an intricate rodlet ultrastructure on the aerial surfaces, and the two Cys residues were determined to be critical for its function. ChpC augmented aerial hypha formation and rodlet assembly, likely by anchoring the short chaplins to the cell surface, while ChpE was essential for the viability of wild-type S. coelicolor. Interestingly, the lethal effects of a chpE null mutation could be suppressed by the loss of the other chaplins, the inactivation of the twin arginine translocation (Tat) secretion pathway, or the loss of the rodlins.
机译:伴侣是一个由八种分泌蛋白组成的家族,这些蛋白对于提高链霉菌的气生菌丝至关重要。这八个伴侣可以分为两大类:长伴侣(ChpA至-C)和短伴侣(ChpD至-H)。短伴侣蛋白可以根据其形成分子内二硫键的能力进一步细分:ChpD,-F,-G和-H包含两个Cys残基,而ChpE则没有。构建了仅包含 chpC chpE chpH 的“最小卓别林菌株”,发现该菌株可产生大量的气生菌丝体。该菌株用于检查特定伴侣的作用。在该菌株中,含Cys的ChpH被确定为主要的聚合单元,有助于空中菌丝的形成以及在空中表面上复杂的小球状超微结构的组装,并且确定了两个Cys残基对其功能至关重要。 ChpC可能通过将短链霉菌锚定到细胞表面而增强了空中菌丝的形成和小球的组装,而ChpE对于野生型 S的生存能力至关重要。 coelicolor 。有趣的是, chpE 无效突变的致死作用可以通过其他伴侣蛋白的缺失,双精氨酸易位(Tat)分泌途径的失活或罗丹林的缺失来抑制。

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