Negative-Stain Electron Microscopy Reveals Dramatic Structural Rearrangements in Ni-Fe-S-Dependent Carbon Monoxide Dehydrogenase/Acetyl-CoA Synthase.

负染电子显微镜揭示了 Ni-Fe-S 依赖性一氧化碳脱氢酶/乙酰辅酶A合成酶的显著结构重排

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作者:Cohen Steven E, Brignole Edward J, Wittenborn Elizabeth C, Can Mehmet, Thompson Samuel, Ragsdale Stephen W, Drennan Catherine L
The Ni-Fe-S-containing A-cluster of acetyl-coenzyme A (CoA) synthase (ACS) assembles acetyl-CoA from carbon monoxide (CO), a methyl group (CH(3)(+)), and CoA. To accomplish this feat, ACS must bind CoA and interact with two other proteins that contribute the CO and CH(3)(+), respectively: CO dehydrogenase (CODH) and corrinoid Fe-S protein (CFeSP). Previous structural data show that, in the model acetogen Moorella thermoacetica, domain 1 of ACS binds to CODH such that a 70-Ã -long internal channel is created that allows CO to travel from CODH to the A-cluster. The A-cluster is largely buried and is inaccessible to CFeSP for methylation. Here we use electron microscopy to capture multiple snapshots of ACS that reveal previously uncharacterized domain motion, forming extended and hyperextended structural states. In these structural states, the A-cluster is accessible for methylation by CFeSP.

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