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NafY 中的一个无菌α基序结构域通过连接结构域将 apo-NifDK 靶向铁钼辅因子的输送。

A sterile alpha-motif domain in NafY targets apo-NifDK for iron-molybdenum cofactor delivery via a tethered domain.

机构信息

Department of Biochemistry, Arizona College of Osteopathic Medicine, Midwestern University Arizona, Glendale, Arizona 85308, USA.

出版信息

J Biol Chem. 2011 Feb 25;286(8):6321-8. doi: 10.1074/jbc.M110.168732. Epub 2010 Dec 14.

Abstract

NafY participates in the final steps of nitrogenase maturation, having a dual role as iron-molybdenum cofactor (FeMo-co) carrier and as chaperone to the FeMo-co-deficient apo-NifDK (apo-dinitrogenase). NafY contains an N-terminal domain of unknown function (n-NafY) and a C-terminal domain (core-NafY) necessary for FeMo-co binding. We show here that n-NafY and core-NafY have very weak interactions in intact NafY. The NMR structure of n-NafY reveals that it belongs to the sterile α-motif (SAM) family of domains, which are frequently involved in protein-protein interactions. The presence of a SAM domain in NafY was unexpected and could not be inferred from its amino acid sequence. Although SAM domains are very commonly found in eukaryotic proteins, they have rarely been identified in prokaryotes. The n-NafY SAM domain binds apo-NifDK. As opposed to full-length NafY, n-NafY impaired FeMo-co insertion when present in molar excess relative to FeMo-co and apo-NifDK. The implications of these observations are discussed to offer a plausible mechanism of FeMo-co insertion. NafY domain structure, molecular tumbling, and interdomain motion, as well as NafY interaction with apo-NifDK are consistent with the function of NafY in FeMo-co delivery to apo-NifDK.

摘要

NafY 参与固氮酶成熟的最后步骤,具有作为铁钼辅因子 (FeMo-co) 载体和 FeMo-co 缺乏的 apo-NifDK(脱氮酶)伴侣的双重作用。NafY 包含一个未知功能的 N 端结构域(n-NafY)和一个 C 端结构域(核心-NafY),这对于 FeMo-co 结合是必需的。我们在这里表明,完整的 NafY 中 n-NafY 和核心-NafY 之间的相互作用非常弱。n-NafY 的 NMR 结构表明它属于无菌 α 基序(SAM)结构域家族,该家族经常参与蛋白质-蛋白质相互作用。NafY 中存在 SAM 结构域是出乎意料的,无法从其氨基酸序列推断出来。虽然 SAM 结构域在真核蛋白中非常常见,但在原核生物中很少被发现。n-NafY 的 SAM 结构域与 apo-NifDK 结合。与全长 NafY 相反,当 n-NafY 相对于 FeMo-co 和 apo-NifDK 以摩尔过量存在时,会损害 FeMo-co 的插入。讨论这些观察结果的意义,以提供一种合理的 FeMo-co 插入机制。NafY 结构域结构、分子翻滚和结构域间运动,以及 NafY 与 apo-NifDK 的相互作用,与 NafY 在将 FeMo-co 递送至 apo-NifDK 中的功能一致。

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本文引用的文献

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Molybdenum cofactors, enzymes and pathways.钼辅因子、酶与代谢途径。
Nature. 2009 Aug 13;460(7257):839-47. doi: 10.1038/nature08302.
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Biosynthesis of the iron-molybdenum cofactor of nitrogenase.固氮酶铁钼辅因子的生物合成
Annu Rev Microbiol. 2008;62:93-111. doi: 10.1146/annurev.micro.62.081307.162737.
5
Assembly of nitrogenase MoFe protein.固氮酶钼铁蛋白的组装
Biochemistry. 2008 Apr 1;47(13):3973-81. doi: 10.1021/bi7025003. Epub 2008 Mar 4.
8
P-cluster maturation on nitrogenase MoFe protein.固氮酶钼铁蛋白上的P簇成熟
Proc Natl Acad Sci U S A. 2007 Jun 19;104(25):10424-9. doi: 10.1073/pnas.0704297104. Epub 2007 Jun 11.
10
NifB-dependent in vitro synthesis of the iron-molybdenum cofactor of nitrogenase.固氮酶铁钼辅因子的NifB依赖性体外合成。
Proc Natl Acad Sci U S A. 2006 Apr 4;103(14):5297-301. doi: 10.1073/pnas.0601115103. Epub 2006 Mar 27.

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