4.5 Article

Carbonyl reduction by YmfI in Bacillus subtilis prevents accumulation of an inhibitory EF-P modification state

期刊

MOLECULAR MICROBIOLOGY
卷 106, 期 2, 页码 236-251

出版社

WILEY
DOI: 10.1111/mmi.13760

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资金

  1. National Science Foundation Graduate Research Fellowship [1342962]
  2. National Institutes of Health [T32 GM086252, GM065183]
  3. OSU Center for RNA Biology Fellowship
  4. Cancer Center Support Grant from the National Institutes of Health [P30 CA015704]

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Translation elongation factor P (EF-P) in Bacillus subtilis is required for a form of surface migration called swarming motility. Furthermore, B. subtilis EF-P is post-translationally modified with a 5-aminopentanol group but the pathway necessary for the synthesis and ligation of the modification is unknown. Here we determine that the protein YmfI catalyzes the reduction of EF-P-5 aminopentanone to EF-P-5 aminopentanol. In the absence of YmfI, accumulation of 5-aminopentanonated EF-P is inhibitory to swarming motility. Suppressor mutations that enhanced swarming in the absence of YmfI were found at two positions on EF-P, including one that changed the conserved modification site (Lys 32) and abolished post-translational modification. Thus, while modification of EF-P is thought to be essential for EF-P activity, here we show that in some cases it can be dispensable. YmfI is the first protein identified in the pathway leading to EF-P modification in B. subtilis, and B. subtilis encodes the first EF-P ortholog that retains function in the absence of modification.

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