An unusual Co–S bond links B <sub>12</sub> chaperones in an interprotein complex

R Romila Mascarenhas (Department of Biological Chemistry, University of Michigan) M Markus Ruetz (Department of Biological Chemistry, University of Michigan) N Natalie Heitman (Department of Biological Chemistry, University of Michigan) R Ryan L. Hall (Department of Chemistry) T Thomas C. Brunold (Department of Chemistry) R Ruma Banerjee

Abstract

Chaperones in trafficking pathways ensure specificity of transition metal loading and protection against adventitious side reactions. In B 12 , an essential cofactor for humans, a cobalt ion is coordinated to a &gt;1.3 kDa tetrapyrrolic scaffold, posing logistical challenges for its translocation. In this study, we report the 3.4 Å crystal structure of the human MMACHC and MMADHC B 12 chaperones, tethered via a rarely seen covalent cobalt–sulfur bond. B 12 is bound in the base-off state to MMACHC, with Cys-261 on MMADHC serving as the upper axial ligand; the lower-axial position is vacant. The propensity of thiolato-cobalamin derivatives bound to MMACHC to undergo spontaneous decomposition via general acid catalysis or reduction/oxidation chemistry is averted in the interprotein complex with MMADHC. An exposed face in the complex suggests an exit route for B 12 . No known clinical variants localize to the interprotein interface, consistent with the cobalt–sulfur bond being key to forming the high-affinity complex.

Article Details

Volume / Issue Vol. 122, Issue 39
Published September 30, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

R

Romila Mascarenhas

Department of Biological Chemistry, University of Michigan

M

Markus Ruetz

Department of Biological Chemistry, University of Michigan

N

Natalie Heitman

Department of Biological Chemistry, University of Michigan

R

Ryan L. Hall

Department of Chemistry

T

Thomas C. Brunold

Department of Chemistry

R

Ruma Banerjee