bims-resufa Biomed News
on Respiratory supercomplex factors
Issue of 2026–07–26
one paper selected by
Gavin McStay, Liverpool John Moores University



  1. FEBS Lett. 2026 Jul 21.
      In most Actinobacteria, the respiratory complexes CIII and CIV form an obligate supercomplex, but the exact subunit composition varies. Here, we have characterized AscF (MSMEG_4692), a subunit of the Mycobacterium smegmatis CIII-CIV supercomplex. We showed that AscF and the small, membrane-anchored AscG constitute a heteromeric TPM domain featuring a noncanonical topology. Biophysical analysis demonstrated that the isolated AscF/AscG module lacked intrinsic affinity for metals or respiratory nucleotides in vitro. Functionally, an ascF frameshift mutant exhibited abolished malate-dependent oxygen consumption and severe growth defects on nonfermentable energy sources. We conclude that AscF likely is not a sensor for metal ions or nucleotides but acts as an adapter subunit facilitating electron transfer from the tricarboxylic acid cycle to the mycobacterial respiratory supercomplex.
    Keywords:  Mycobacterium smegmatis; TPM domain; malate oxidation; respiratory supercomplex
    DOI:  https://doi.org/10.1002/1873-3468.70414