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鉴定酰基载体蛋白构象稳定性中的一个关键残基。

Identification of a key residue in the conformational stability of acyl carrier protein.

作者信息

Keating Mary-Margaret, Gong Huansheng, Byers David M

机构信息

Atlantic Research Centre, Department of Pediatrics, Dalhousie University, Halifax, NS, Canada B3H 4H7.

出版信息

Biochim Biophys Acta. 2002 Dec 16;1601(2):208-14. doi: 10.1016/s1570-9639(02)00470-3.

Abstract

Conformational flexibility of acyl carrier protein (ACP) is important for its ability to interact with multiple enzymes in bacterial fatty acid metabolism. We have recently shown that, unlike the prototypical ACP from Escherichia coli, the more acidic Vibrio harveyi ACP is largely unfolded at physiological pH. Mutations D18K, A75H and A75H/D18K were made in recombinant V. harveyi ACP (rACP) to determine the importance of basic residues Lys-18 and His-75 in maintaining the native conformation of E. coli ACP. Both D18K and A75H ACPs were fatty acylated by acyl-ACP synthetase, showing that neither mutation grossly alters tertiary structure. Circular dichroism (CD) indicated that rACP refolded upon addition of MgCl(2) at 100-fold lower concentrations (<1 mM) than KCl, suggesting that divalent cations stabilize rACP by interaction at specific sites. Surprisingly, mutants A75H and A75H/D18K exhibited native-like conformation in the absence of MgCl(2), while the D18K mutant was comparable to rACP. Moreover, the alpha-helical content of A75H, A75H/D18K and E. coli ACPs was more sensitive than that of rACP or D18K ACP to modification by the histidine-selective reagent diethylpyrocarbonate. Together, these results suggest that the partial positive charge of His-75 may be important in maintaining the conformational stability of E. coli ACP at a neutral pH.

摘要

酰基载体蛋白(ACP)的构象灵活性对于其在细菌脂肪酸代谢中与多种酶相互作用的能力至关重要。我们最近发现,与来自大肠杆菌的典型ACP不同,酸性更强的哈维氏弧菌ACP在生理pH下大多处于未折叠状态。在重组哈维氏弧菌ACP(rACP)中引入D18K、A75H和A75H/D18K突变,以确定碱性残基赖氨酸-18和组氨酸-75在维持大肠杆菌ACP天然构象中的重要性。D18K和A75H ACP均被酰基-ACP合成酶脂肪酰化,表明这两种突变均未严重改变三级结构。圆二色性(CD)表明,在比KCl低100倍的浓度(<1 mM)下添加MgCl₂时,rACP会重新折叠,这表明二价阳离子通过在特定位点的相互作用来稳定rACP。令人惊讶的是,在没有MgCl₂的情况下,突变体A75H和A75H/D18K呈现出类似天然的构象,而D18K突变体与rACP相当。此外,A75H、A75H/D18K和大肠杆菌ACP的α-螺旋含量比rACP或D18K ACP对组氨酸选择性试剂焦碳酸二乙酯的修饰更敏感。总之,这些结果表明,组氨酸-75的部分正电荷可能在维持中性pH下大肠杆菌ACP的构象稳定性方面很重要。

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