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Structural insights into the C1q domain of Caprin-2 in canonical Wnt signaling.


ABSTRACT: Previously, we have identified Caprin-2 as a new regulator in canonical Wnt signaling through a mechanism of facilitating LRP5/6 phosphorylation; moreover, we found that its C-terminal C1q-related domain (Cap2_CRD) is required for this process. Here, we determined the crystal structures of Cap2_CRD from human and zebrafish, which both associate as a homotrimer with calcium located at the symmetric center. Surprisingly, the calcium binding-deficient mutant exists as a more stable trimer than its wild-type counterpart. Further studies showed that this Caprin-2 mutant disabled in binding calcium maintains the activity of promoting LRP5/6 phosphorylation, whereas the mutations disrupting Cap2_CRD homotrimer did impair such activity. Together, our findings suggested that the C-terminal CRD domain of Caprin-2 forms a flexible homotrimer mediated by calcium and that such trimeric assembly is required for Caprin-2 to regulate canonical Wnt signaling.

SUBMITTER: Miao H 

PROVIDER: S-EPMC4256344 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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Structural insights into the C1q domain of Caprin-2 in canonical Wnt signaling.

Miao Haofei H   Jia Yingying Y   Xie Sichun S   Wang Xin X   Zhao Jianfei J   Chu Youjun Y   Zhou Zhilei Z   Shi Zhubing Z   Song Xiaomin X   Li Lin L  

The Journal of biological chemistry 20141020 49


Previously, we have identified Caprin-2 as a new regulator in canonical Wnt signaling through a mechanism of facilitating LRP5/6 phosphorylation; moreover, we found that its C-terminal C1q-related domain (Cap2_CRD) is required for this process. Here, we determined the crystal structures of Cap2_CRD from human and zebrafish, which both associate as a homotrimer with calcium located at the symmetric center. Surprisingly, the calcium binding-deficient mutant exists as a more stable trimer than its  ...[more]

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