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Structural basis of transcobalamin recognition by human CD320 receptor.


ABSTRACT: Cellular uptake of vitamin B12 (cobalamin) requires capture of transcobalamin (TC) from the plasma by CD320, a ubiquitous cell surface receptor of the LDLR family. Here we present the crystal structure of human holo-TC in complex with the extracellular domain of CD320, visualizing the structural basis of the TC-CD320 interaction. The observed interaction chemistry can rationalize the high affinity of CD320 for TC and lack of haptocorrin binding. The in vitro affinity and complex stability of TC-CD320 were quantitated using a solid-phase binding assay and thermostability analysis. Stable complexes with TC were also observed for the disease-causing CD320?E88 mutant and for the isolated LDLR-A2 domain. We also determined the structure of the TC-CD320?E88 complex, which revealed only minor changes compared with the wild-type complex. Finally, we demonstrate significantly reduced in vitro affinity of TC for CD320 at low pH, recapitulating the proposed ligand release during the endocytic pathway.

SUBMITTER: Alam A 

PROVIDER: S-EPMC4947154 | biostudies-literature | 2016 Jul

REPOSITORIES: biostudies-literature

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Structural basis of transcobalamin recognition by human CD320 receptor.

Alam Amer A   Woo Jae-Sung JS   Schmitz Jennifer J   Prinz Bernadette B   Root Katharina K   Chen Fan F   Bloch Joël S JS   Zenobi Renato R   Locher Kaspar P KP  

Nature communications 20160714


Cellular uptake of vitamin B12 (cobalamin) requires capture of transcobalamin (TC) from the plasma by CD320, a ubiquitous cell surface receptor of the LDLR family. Here we present the crystal structure of human holo-TC in complex with the extracellular domain of CD320, visualizing the structural basis of the TC-CD320 interaction. The observed interaction chemistry can rationalize the high affinity of CD320 for TC and lack of haptocorrin binding. The in vitro affinity and complex stability of TC-  ...[more]

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