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从嗜热古菌火球菌中鉴定出首个古菌寡肽结合蛋白。

Identification of the first archaeal oligopeptide-binding protein from the hyperthermophile Aeropyrum pernix.

作者信息

Palmieri Gianna, Casbarra Annarita, Fiume Immacolata, Catara Giuliana, Capasso Antonio, Marino Gennaro, Onesti Silvia, Rossi Mosé

机构信息

IBP-Consiglio Nazionale delle Ricerche, 80131 Naples, Italy.

出版信息

Extremophiles. 2006 Oct;10(5):393-402. doi: 10.1007/s00792-006-0508-1. Epub 2006 Apr 25.

Abstract

The archaeon Aeropyrum pernix grows optimally at 90 degrees C and derives energy primarily from aerobic degradation of complex proteinaceous substrates. The ability of these nutrients to sustain growth is generally associated with the presence of oligopeptide transport systems, such as the well-known protein-dependent ATP-binding cassette (ABC) transporters. This study is concerned with the isolation and characterisation of the first archaeal oligopeptide-binding protein (OppA(Ap)) from the extracellular medium of A. pernix. The protein shows a pI of 3.9 and a molecular mass of about 90 kDa under native conditions. By using a proteomic approach, the OppA(Ap)-encoding gene was identified (APE1583) and about 55% of the protein amino-acid sequence was validated. The extracellular purified protein was able to efficiently bind oligopeptide substrates such as Xenopsin. The amount of a liganded peptide to OppA(Ap) was about 70% at 90 degrees C using a 1/100 (w/w) OppA(Ap)/substrate ratio. Sequence comparisons showed a weak but significant similarity of OppA(Ap) with bacterial oligopeptide binding proteins. Furthermore, APE1583 neighbouring genes encode for the cognate components of an ABC transport system, suggesting that these ORFs are organised in an operon-like structure, with OppA(Ap )as the extracellular component for the uptake of oligopeptides.

摘要

嗜热栖热放线菌在90摄氏度时生长最佳,其能量主要来自复杂蛋白质底物的有氧降解。这些营养物质维持生长的能力通常与寡肽转运系统的存在有关,比如著名的依赖蛋白质的ATP结合盒(ABC)转运蛋白。本研究关注从嗜热栖热放线菌的细胞外培养基中分离和鉴定首个古菌寡肽结合蛋白(OppA(Ap))。该蛋白在天然条件下的pI为3.9,分子量约为90 kDa。通过蛋白质组学方法,鉴定出了OppA(Ap)编码基因(APE1583),并验证了约55%的蛋白质氨基酸序列。细胞外纯化的蛋白能够有效结合寡肽底物,如Xenopsin。在90摄氏度下,使用1/100(w/w)的OppA(Ap)/底物比例时,与OppA(Ap)结合的配体肽量约为70%。序列比较显示,OppA(Ap)与细菌寡肽结合蛋白有微弱但显著的相似性。此外,APE1583的相邻基因编码ABC转运系统的同源组分,这表明这些开放阅读框以操纵子样结构组织,其中OppA(Ap)作为摄取寡肽的细胞外组分。

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