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酰基载体蛋白种间嵌合体的功能分析表明存在一个用于蛋白质识别的特殊结构域。

Functional analysis of an interspecies chimera of acyl carrier proteins indicates a specialized domain for protein recognition.

作者信息

Ritsema T, Gehring A M, Stuitje A R, van der Drift K M, Dandal I, Lambalot R H, Walsh C T, Thomas-Oates J E, Lugtenberg B J, Spaink H P

机构信息

Leiden University, Institute of Molecular Plant Sciences, Clusius Laboratory, The Netherlands.

出版信息

Mol Gen Genet. 1998 Apr;257(6):641-8. doi: 10.1007/s004380050692.

Abstract

The nodulation protein NodF of Rhizobium shows 25% identity to acyl carrier protein (ACP) from Escherichia coli (encoded by the gene acpP). However, NodF cannot be functionally replaced by AcpP. We have investigated whether NodF is a substrate for various E. coli enzymes which are involved in the synthesis of fatty acids. NodF is a substrate for the addition of the 4'-phosphopantetheine prosthetic group by holo-ACP synthase. The Km value for NodF is 61 microM, as compared to 2 microM for AcpP. The resulting holo-NodF serves as a substrate for coupling of malonate by malonyl-CoA:ACP transacylase (MCAT) and for coupling of palmitic acid by acyl-ACP synthetase. NodF is not a substrate for beta-keto-acyl ACP synthase III (KASIII), which catalyses the initial condensation reaction in fatty acid biosynthesis. A chimeric gene was constructed comprising part of the E. coli acpP gene and part of the nodF gene. Circular dichroism studies of the chimeric AcpP-NodF (residues 1-33 of AcpP fused to amino acids 43-93 of NodF) protein encoded by this gene indicate a similar folding pattern to that of the parental proteins. Enzymatic analysis shows that AcpP-NodF is a substrate for the enzymes holo-ACP synthase, MCAT and acyl-ACP synthetase. Biological complementation studies show that the chimeric AcpP-NodF gene is able functionally to replace NodF in the root nodulation process in Vicia sativa. We therefore conclude that NodF is a specialized acyl carrier protein whose specific features are encoded in the C-terminal region of the protein. The ability to exchange domains between such distantly related proteins without affecting conformation opens exciting possibilities for further mapping of the functional domains of acyl carrier proteins (i. e., their recognition sites for many enzymes).

摘要

根瘤菌的结瘤蛋白NodF与大肠杆菌的酰基载体蛋白(ACP,由基因acpP编码)有25%的同源性。然而,NodF不能被AcpP功能替代。我们研究了NodF是否是参与脂肪酸合成的各种大肠杆菌酶的底物。NodF是全酶型ACP合酶添加4'-磷酸泛酰巯基乙胺辅基的底物。NodF的Km值为61微摩尔,而AcpP的Km值为2微摩尔。生成的全酶型NodF可作为丙二酸单酰辅酶A:ACP转酰基酶(MCAT)偶联丙二酸以及酰基ACP合成酶偶联棕榈酸的底物。NodF不是β-酮脂酰ACP合酶III(KASIII)的底物,KASIII催化脂肪酸生物合成中的初始缩合反应。构建了一个嵌合基因,它包含部分大肠杆菌acpP基因和部分nodF基因。对该基因编码的嵌合AcpP-NodF(AcpP的第1至33位残基与NodF的第43至93位氨基酸融合)蛋白进行的圆二色性研究表明,其折叠模式与亲本蛋白相似。酶促分析表明,AcpP-NodF是全酶型ACP合酶、MCAT和酰基ACP合成酶的底物。生物学互补研究表明,嵌合AcpP-NodF基因在功能上能够替代蚕豆根瘤形成过程中的NodF。因此,我们得出结论,NodF是一种特殊的酰基载体蛋白,其特定特征编码在该蛋白的C端区域。在如此远缘相关的蛋白质之间交换结构域而不影响构象的能力,为进一步绘制酰基载体蛋白的功能结构域(即它们对许多酶的识别位点)开辟了令人兴奋的可能性。

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