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Marked structural rearrangement of mannose 6-phosphate/IGF2 receptor at different pH environments.


ABSTRACT: Many cell surface receptors internalize their ligands and deliver them to endosomes, where the acidic pH causes the ligand to dissociate. The liberated receptor returns to the cell surface in a process called receptor cycling. The structural basis for pH-dependent ligand dissociation is not well understood. In some receptors, the ligand binding domain is composed of multiple repeated sequences. The insulin-like growth factor 2 receptor (IGF2R) contains 15 ? strand-rich repeat domains. The overall structure and the mechanism by which IGF2R binds IGF2 and releases it are unknown. We used cryo-EM to determine the structures of the IGF2R at pH 7.4 with IGF2 bound and at pH 4.5 in the ligand-dissociated state. The results reveal different arrangements of the receptor in different pH environments mediated by changes in the interactions between the repeated sequences. These results have implications for our understanding of ligand release from receptors in endocytic compartments.

SUBMITTER: Wang R 

PROVIDER: S-EPMC7015683 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Marked structural rearrangement of mannose 6-phosphate/IGF2 receptor at different pH environments.

Wang Rong R   Qi Xiaofeng X   Schmiege Philip P   Coutavas Elias E   Li Xiaochun X  

Science advances 20200212 7


Many cell surface receptors internalize their ligands and deliver them to endosomes, where the acidic pH causes the ligand to dissociate. The liberated receptor returns to the cell surface in a process called receptor cycling. The structural basis for pH-dependent ligand dissociation is not well understood. In some receptors, the ligand binding domain is composed of multiple repeated sequences. The insulin-like growth factor 2 receptor (IGF2R) contains 15 β strand-rich repeat domains. The overal  ...[more]

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