| Literature DB >> 28052259 |
Kyoko Matoba1, Emiko Mihara1, Keiko Tamura-Kawakami1, Naoyuki Miyazaki1, Shintaro Maeda1, Hidenori Hirai1, Samuel Thompson1, Kenji Iwasaki1, Junichi Takagi2.
Abstract
LDL-receptor-related protein 6 (LRP6) is a single-pass membrane glycoprotein with a large modular ectodomain and forms a higher order signaling platform upon binding Wnt ligands on the cell surface. Although multiple crystal structures are available for fragments of the LRP6 ectodomain, we lack a consensus view on the overall molecular architecture of the full-length LRP6 and its dynamic aspects. Here, we used negative-stain electron microscopy to probe conformational states of the entire ectodomain of LRP6 in solution and found that the four-module ectodomain undergoes a large bending motion hinged at the junction between the second and the third modules. Importantly, the extent of inter-domain motion is modulated by evolutionarily conserved N-glycan chains proximal to the joint. We also found that the LRP6 ectodomain becomes highly compact upon complexation with the Wnt antagonist Dkk1, suggesting a potential role for the ectodomain conformational change in the regulation of receptor oligomerization and signaling.Entities:
Keywords: Dkk1; LRP6; N-glycosylation; Wnt signal; conformational flexibility; negative-stain electron microscopy; receptor ectodomain; single particle analysis
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Year: 2017 PMID: 28052259 DOI: 10.1016/j.celrep.2016.12.017
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423