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Structural and Functional Insights into Aeropyrum pernix OppA a Member of a Novel Archaeal OppA Subfamily

机译:结构和功能上的见解对Aeropyrum pernix OppA一个新的古细菌OppA亚家族的成员

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摘要

In this study we gain insight into the structural and functional characterization of the Aeropyrum pernix oligopeptide-binding protein (OppAAp) previously identified from the extracellular medium of an Aeropyrum pernix cell culture at late stationary phase. OppAAp showed an N-terminal Q32 in a pyroglutamate form and C-terminal processing at the level of a threonine-rich region probably involved in protein membrane anchoring. Moreover, the OppAAp protein released into the medium was identified as a “nicked” form composed of two tightly associated fragments detachable only under strong denaturing conditions. The cleavage site E569-G570 seems be located on an exposed surface loop that is highly conserved in several three-dimensional (3D) structures of dipeptide/oligopeptide-binding proteins from different sources. Structural and biochemical properties of the nicked protein were virtually indistinguishable from those of the intact form. Indeed, studies of the entire bacterially expressed OppAAp protein owning the same N and C termini of the nicked form supported these findings. Moreover, in the middle exponential growth phase, OppAAp was found as an intact cell membrane-associated protein. Interestingly, the native exoprotein OppAAp was copurified with a hexapeptide (EKFKIV) showing both lysines methylated and possibly originating from an A. pernix endogenous stress-induced lipoprotein. Therefore, the involvement of OppAAp in the recycling of endogenous proteins was suggested to be a potential physiological function. Finally, a new OppA from Sulfolobus solfataricus, SSO1288, was purified and preliminarily characterized, allowing the identification of a common structural/genetic organization shared by all “true” archaeal OppA proteins of the dipeptide/oligopeptide class.
机译:在这项研究中,我们深入了解了气单孢菌多年生菌寡肽结合蛋白(OppAAp)的结构和功能特性,该蛋白以前是在稳定后期从气单孢菌多年生菌培养物的细胞外培养基中鉴定出来的。 OppAAp以焦谷氨酸形式显示N末端Q32,在可能参与蛋白质膜锚定的富含苏氨酸的区域水平显示C末端加工。此外,释放到培养基中的OppAAp蛋白被鉴定为“缺口”形式,由仅在强变性条件下可分离的两个紧密结合的片段组成。切割位点E569-G570似乎位于暴露的表面环上,该环在来自不同来源的二肽/寡肽结合蛋白的几个三维(3D)结构中高度保守。带切口的蛋白质的结构和生化特性与完整形式几乎没有区别。实际上,对具有相同切口形式的N和C末端的整个细菌表达的OppAAp蛋白的研究支持了这些发现。此外,在中等指数生长期,OppAAp被发现是完整的细胞膜相关蛋白。有趣的是,天然胞外蛋白OppAAp与六肽(EKFKIV)共同纯化,既显示赖氨酸甲基化,又可能源自产自A. pernix内源性应激的脂蛋白。因此,OppAAp参与内源蛋白的回收被认为是潜在的生理功能。最后,纯化并初步表征了来自Sulfolobus solfataricus的新O​​ppA,并对其进行了初步表征,从而可以鉴定出所有二肽/寡肽类“真”古细菌OppA蛋白共有的共同的结构/遗传组织。

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