4.8 Article

Aldehyde-alcohol dehydrogenase forms a high-order spirosome architecture critical for its activity

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-12427-8

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资金

  1. Global Science experimental Data hub Center (GSDC), Korea Institute of Science and Technology Information (KISTI)
  2. National Research Foundation of Korea [NRF-2016R1A2B3006293, NRF-2016K1A1A2912057, GSDC-NRF-2018R1A6A7052113]
  3. Grand Challenge 30 program from KAIST
  4. Intelligent Synthetic Biology Center (ISBC) of Global Frontier Project - Ministry of Science and ICT(MSIT) [2011-003955]
  5. Global Fellowship [NRF-2018H1A2A1061362]
  6. Skim Latihan Bumiputera from the Ministry of Higher Education Malaysia
  7. Universiti Sains Islam Malaysia

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Aldehyde-alcohol dehydrogenase (AdhE) is a key enzyme in bacterial fermentation, converting acetyl-CoA to ethanol, via two consecutive catalytic reactions. Here, we present a 3.5 angstrom resolution cryo-EM structure of full-length AdhE revealing a high-order spirosome architecture. The structure shows that the aldehyde dehydrogenase (ALDH) and alcohol dehydrogenase (ADH) active sites reside at the outer surface and the inner surface of the spirosome respectively, thus topologically separating these two activities. Furthermore, mutations disrupting the helical structure abrogate enzymatic activity, implying that formation of the spirosome structure is critical for AdhE activity. In addition, we show that this spirosome structure undergoes conformational change in the presence of cofactors. This work presents the atomic resolution structure of AdhE and suggests that the high-order helical structure regulates its enzymatic activity.

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