TY - JOUR
T1 - 3.3 Å structure of Niemann–Pick C1 protein reveals insights into the function of the C-terminal luminal domain in cholesterol transport
AU - Li, Xiaochun
AU - Lu, Feiran
AU - Trinh, Michael N.
AU - Schmiege, Philip
AU - Seemann, Joachim
AU - Wang, Jiawei
AU - Blobel, Günter
N1 - Funding Information:
ACKNOWLEDGMENTS. We thank Joseph L. Goldstein and Michael S. Brown for support and suggestions; Erik Debler for help with manuscript editing; Elias Coutavas for help with manuscript preparation and revision; and Joseph Fernandez and Henrik Molina (Proteomics Resource Center at The Rockefeller University, funded by the Leona M. and Harry B. Helmsley Charitable Trust) for mass spectrometry analyses. This work was supported by funds from the Howard Hughes Medical Institute (G.B., investigator) and by NIH Grants HL20948 and GM096070 (to J.S.). X.L. is the recipient of a Gordon and Betty Moore Foundation Fellow of the Life Sciences Research Foundation.
Publisher Copyright:
© 2017, National Academy of Sciences. All rights reserved.
PY - 2017/8/22
Y1 - 2017/8/22
N2 - Niemann–Pick C1 (NPC1) and NPC2 proteins are indispensable for the export of LDL-derived cholesterol from late endosomes. Mutations in these proteins result in Niemann–Pick type C disease, a lysosomal storage disease. Despite recent reports of the NPC1 structure depicting its overall architecture, the function of its C-terminal luminal domain (CTD) remains poorly understood even though 45% of NPC disease-causing mutations are in this domain. Here, we report a crystal structure at 3.3 Å resolution of NPC1* (residues 314–1,278), which—in contrast to previous lower resolution structures—features the entire CTD well resolved. Notably, all eight cysteines of the CTD form four disulfide bonds, one of which (C909–C914) enforces a specific loop that in turn mediates an interaction with a loop of the N-terminal domain (NTD). Importantly, this loop and its interaction with the NTD were not observed in any previous structures due to the lower resolution. Our mutagenesis experiments highlight the physiological relevance of the CTD–NTD interaction, which might function to keep the NTD in the proper orientation for receiving cholesterol from NPC2. Additionally, this structure allows us to more precisely map all of the disease-causing mutations, allowing future molecular insights into the pathogenesis of NPC disease.
AB - Niemann–Pick C1 (NPC1) and NPC2 proteins are indispensable for the export of LDL-derived cholesterol from late endosomes. Mutations in these proteins result in Niemann–Pick type C disease, a lysosomal storage disease. Despite recent reports of the NPC1 structure depicting its overall architecture, the function of its C-terminal luminal domain (CTD) remains poorly understood even though 45% of NPC disease-causing mutations are in this domain. Here, we report a crystal structure at 3.3 Å resolution of NPC1* (residues 314–1,278), which—in contrast to previous lower resolution structures—features the entire CTD well resolved. Notably, all eight cysteines of the CTD form four disulfide bonds, one of which (C909–C914) enforces a specific loop that in turn mediates an interaction with a loop of the N-terminal domain (NTD). Importantly, this loop and its interaction with the NTD were not observed in any previous structures due to the lower resolution. Our mutagenesis experiments highlight the physiological relevance of the CTD–NTD interaction, which might function to keep the NTD in the proper orientation for receiving cholesterol from NPC2. Additionally, this structure allows us to more precisely map all of the disease-causing mutations, allowing future molecular insights into the pathogenesis of NPC disease.
KW - Cholesterol transport
KW - Crystal structure
KW - Cysteine-rich domain
KW - Niemann–Pick type C disease
KW - Sterol-sensing domain
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U2 - 10.1073/pnas.1711716114
DO - 10.1073/pnas.1711716114
M3 - Article
C2 - 28784760
AN - SCOPUS:85027863686
SN - 0027-8424
VL - 114
SP - 9116
EP - 9121
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 34
ER -