Activity of the Mycobacterial Proteasomal ATPase Mpa Is Reversibly Regulated by Pupylation

Pupylation is a bacterial post-translational modification of target proteins on lysine residues with prokaryotic ubiquitin-like protein Pup. Pup-tagged substrates are recognized by a proteasome-interacting ATPase termed Mpa in Mycobacterium tuberculosis. Mpa unfolds pupylated substrates and threads them into the proteasome core particle for degradation. Interestingly, Mpa itself is also a pupylation target. Here, we show that the Pup ligase PafA predominantly produces monopupylated Mpa modified homogeneously on a single lysine residue within its C-terminal region. We demonstrate that this modification renders Mpa functionally inactive. Pupylated Mpa can no longer support Pup-mediated proteasomal degradation due to its inability to associate with the proteasome core. Mpa is further inactivated by rapid Pup- and ATPase-driven deoligomerization of the hexameric Mpa ring. We show that pupylation of Mpa is chemically and functionally reversible. Mpa regains its enzymatic activity upon depupylation by the depupylase Dop, affording a rapid and reversible activity control over Mpa function.


Publikationsart
Wissenschaftliche Artikel
Titel
Activity of the Mycobacterial Proteasomal ATPase Mpa Is Reversibly Regulated by Pupylation
Medien
Journal of Biological Chemistry
Heft
11
Band
287
Autor:innen
Cyrille L. Delley, Frank Striebel, Franziska M. Heydenreich, Dennis Özcelik , Eilika Weber-Ban
Seiten
7907-7914
Veröffentlichungsdatum
19.03.2012