Seryl phosphorylation modulates chaperonin function of Mycobacterial Chaperonin, Cpn60.1.
It is shown that canonical oligomerization residues are replaced by serines in Cpn60.1 homologues, enabling a phosphorylation‑switch and support a model in which phosphorylation contributes to higher-order oligomerization and partial chaperonin activity of Cpn60.1.
C. M. Santosh Kumar, Monika Singh, S. Mande et al.
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