Nicotinamide mononucleotide adenylyltransferase displays alternate binding modes for nicotinamide nucleotides.

Roland Pfoh, Emil F Pai, Vivian Saridakis
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引用次数: 3

Abstract

Nicotinamide mononucleotide adenylyltransferase (NMNAT) catalyzes the biosynthesis of NAD(+) and NaAD(+). The crystal structure of NMNAT from Methanobacterium thermoautotrophicum complexed with NAD(+) and SO4(2-) revealed the active-site residues involved in binding and catalysis. Site-directed mutagenesis was used to further characterize the roles played by several of these residues. Arg11 and Arg136 were implicated in binding the phosphate groups of the ATP substrate. Both of these residues were mutated to lysine individually. Arg47 does not interact with either NMN or ATP substrates directly, but was deemed to play a role in binding as it is proximal to Arg11 and Arg136. Arg47 was mutated to lysine and glutamic acid. Surprisingly, when expressed in Escherichia coli all of these NMNAT mutants trapped a molecule of NADP(+) in their active sites. This NADP(+) was bound in a conformation that was quite different from that displayed by NAD(+) in the native enzyme complex. When NADP(+) was co-crystallized with wild-type NMNAT, the same structural arrangement was observed. These studies revealed a different conformation of NADP(+) in the active site of NMNAT, indicating plasticity of the active site.

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烟酰胺单核苷酸腺苷基转移酶显示烟酰胺核苷酸的交替结合模式。
烟酰胺单核苷酸腺苷基转移酶(NMNAT)催化NAD(+)和NaAD(+)的生物合成。热自养甲烷菌NMNAT与NAD(+)和SO4(2-)络合的晶体结构揭示了参与结合和催化的活性位点残基。位点定向诱变被用来进一步表征这些残基所起的作用。Arg11和Arg136与ATP底物的磷酸基团结合有关。这两种残基分别突变为赖氨酸。Arg47不直接与NMN或ATP底物相互作用,但被认为在结合中起作用,因为它与Arg11和Arg136接近。Arg47突变为赖氨酸和谷氨酸。令人惊讶的是,当在大肠杆菌中表达时,所有这些NMNAT突变体在其活性位点捕获了一个NADP(+)分子。该NADP(+)结合的构象与天然酶复合体中的NAD(+)所显示的构象完全不同。当NADP(+)与野生型NMNAT共晶时,观察到相同的结构排列。这些研究揭示了NMNAT活性位点NADP(+)的不同构象,表明活性位点具有可塑性。
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