Literature DB >> 15314240

Binding between the Niemann-Pick C1 protein and a photoactivatable cholesterol analog requires a functional sterol-sensing domain.

Nobutaka Ohgami1, Dennis C Ko, Matthew Thomas, Matthew P Scott, Catherine C Y Chang, Ta-Yuan Chang.   

Abstract

Niemann-Pick type C (NPC) 1 protein plays important roles in moving cholesterol and other lipids out of late endosomes by means of vesicular trafficking, but it is not known whether NPC1 directly interacts with cholesterol. We performed photoaffinity labeling of intact cells expressing fluorescent protein (FP)-tagged NPC1 by using [(3)H]7,7-azocholestanol ([(3)H]AC). After immunoprecipitation, (3)H-labeled NPC1-GFP appeared as a single band. Including excess unlabeled sterol to the labeling reaction significantly diminished the labeling. Altering the NPC1 sterol-sensing domain (SSD) with loss-of-function mutations (P692S and Y635C) severely reduced the extent of labeling. To further demonstrate the specificity of labeling, we show that NPC2, a late endosomal/lysosomal protein that binds to cholesterol with high affinity, is labeled, whereas mutant NPC2 proteins inactive in binding cholesterol are not. Vamp7, an abundant late endosomal membrane protein without an SSD but with one transmembrane domain, cannot be labeled. Binding between [(3)H]AC and NPC1 does not require NPC2. Treating cells with either U-18666A, a compound that creates an NPC-like phenotype, or with bafilomycin A1, a compound that raises late endosomal pH, has no effect on labeling of NPC1-YFP, suggesting that both drugs affect processes other than NPC1 binding to cholesterol. We also developed a procedure to label the NPC1-YFP by [(3)H]AC in vitro and showed that cholesterol is more effective in protection against labeling than its analogs epicholesterol or 5-alpha-cholestan. Overall, the results demonstrate that there is direct binding between NPC1 and azocholestanol; the binding does not require NPC2 but requires a functional SSD within NPC1.

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Year:  2004        PMID: 15314240      PMCID: PMC514655          DOI: 10.1073/pnas.0405255101

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  47 in total

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Review 2.  Regulation of the mevalonate pathway.

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3.  Circulation of cholesterol between lysosomes and the plasma membrane.

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Review 4.  Related membrane domains in proteins of sterol sensing and cell signaling provide a glimpse of treasures still buried within the dynamic realm of intracellular metabolic regulation.

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5.  Trafficking of cholesterol from cell bodies to distal axons in Niemann Pick C1-deficient neurons.

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Journal:  J Biol Chem       Date:  2002-11-27       Impact factor: 5.157

6.  Mutations in the leucine zipper motif and sterol-sensing domain inactivate the Niemann-Pick C1 glycoprotein.

Authors:  H Watari; E J Blanchette-Mackie; N K Dwyer; M Watari; E B Neufeld; S Patel; P G Pentchev; J F Strauss
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7.  Isolation of NPC1-deficient Chinese hamster ovary cell mutants by gene trap mutagenesis.

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8.  The transport of low density lipoprotein-derived cholesterol to the plasma membrane is defective in NPC1 cells.

Authors:  Kari M Wojtanik; Laura Liscum
Journal:  J Biol Chem       Date:  2003-02-18       Impact factor: 5.157

9.  Synthesis and biochemical properties of a new photoactivatable cholesterol analog 7,7-azocholestanol and its linoleate ester in Chinese hamster ovary cell lines.

Authors:  Jonathan C Cruz; Matthew Thomas; Edmund Wong; Nobutaka Ohgami; Shigeki Sugii; Thomas Curphey; Catherine C Y Chang; Ta-Yuan Chang
Journal:  J Lipid Res       Date:  2002-08       Impact factor: 5.922

10.  Structure of a cholesterol-binding protein deficient in Niemann-Pick type C2 disease.

Authors:  Natalia Friedland; Heng-Ling Liou; Peter Lobel; Ann M Stock
Journal:  Proc Natl Acad Sci U S A       Date:  2003-02-18       Impact factor: 11.205

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  84 in total

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2.  Therapeutic potential of cyclodextrins in the treatment of Niemann-Pick type C disease.

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Review 3.  The role of vesicular transport in ABCA1-dependent lipid efflux and its connection with NPC pathways.

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Review 4.  Evolutionary conservation and adaptation in the mechanism that regulates SREBP action: what a long, strange tRIP it's been.

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5.  Structure of N-terminal domain of NPC1 reveals distinct subdomains for binding and transfer of cholesterol.

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6.  DISP3, a sterol-sensing domain-containing protein that links thyroid hormone action and cholesterol metabolism.

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Review 7.  Niemann-Pick C2 (NPC2) and intracellular cholesterol trafficking.

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Review 8.  The LDL receptor.

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9.  MLN64 mediates egress of cholesterol from endosomes to mitochondria in the absence of functional Niemann-Pick Type C1 protein.

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10.  Regulation of sterol transport between membranes and NPC2.

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