Literature DB >> 10357844

Structure and phospholipid transfer activity of human PLTP: analysis by molecular modeling and site-directed mutagenesis.

J Huuskonen1, G Wohlfahrt, M Jauhiainen, C Ehnholm, O Teleman, V M Olkkonen.   

Abstract

The plasma phospholipid transfer protein (PLTP) is an important regulator of high density lipoprotein (HDL) metabolism. We have here, based on sequence alignments of the plasma LPS-binding/lipid transfer protein family and the X-ray structure of the bactericidal/permeability increasing protein (BPI), modeled the structure of PLTP. The model predicts a two-domain architecture with conserved lipid-binding pockets consisting of apolar residues in each domain. By site-directed mutagenesis of selected amino acid residues and transient expression of the protein variants in HeLa cells, the pockets are shown to be essential for PLTP-mediated phospholipid transfer. A solid phase ligand binding assay was used to determine the HDL-binding ability of the mutants. The results suggest that the observed decreases in phospholipid transfer activity of the N-terminal pocket mutants cannot be attributed to altered HDL-binding, but the C-terminal lipid-binding pocket may be involved in the association of PLTP with HDL. Further, the essential structural role of a disulfide bridge between cysteine residues 146 and 185 is demonstrated. The structural model and the mutants characterized here provide powerful tools for the detailed analysis of the mechanisms of PLTP function.

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Year:  1999        PMID: 10357844

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  14 in total

1.  Impact of site-specific N-glycosylation on cellular secretion, activity and specific activity of the plasma phospholipid transfer protein.

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2.  Speciated human high-density lipoprotein protein proximity profiles.

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Journal:  Biochemistry       Date:  2010-11-23       Impact factor: 3.162

3.  Fluoxetine-resistance genes in Caenorhabditis elegans function in the intestine and may act in drug transport.

Authors:  Robert K M Choy; John M Kemner; James H Thomas
Journal:  Genetics       Date:  2005-08-22       Impact factor: 4.562

4.  Ataxia with vitamin E deficiency with a mutation in a phospholipid transfer protein gene.

Authors:  Satoshi Kono; Akiko Otsuji; Hiroaki Hattori; Kentaro Shirakawa; Hitoshi Suzuki; Hiroaki Miyajima
Journal:  J Neurol       Date:  2009-03-01       Impact factor: 4.849

5.  Structural basis of the lipid transfer mechanism of phospholipid transfer protein (PLTP).

Authors:  Meng Zhang; Xiaobo Zhai; Jinping Li; John J Albers; Simona Vuletic; Gang Ren
Journal:  Biochim Biophys Acta Mol Cell Biol Lipids       Date:  2018-06-05       Impact factor: 4.698

Review 6.  Impact of Phospholipid Transfer Protein in Lipid Metabolism and Cardiovascular Diseases.

Authors:  Xian-Cheng Jiang
Journal:  Adv Exp Med Biol       Date:  2020       Impact factor: 2.622

Review 7.  Phospholipid transfer protein: its impact on lipoprotein homeostasis and atherosclerosis.

Authors:  Xian-Cheng Jiang
Journal:  J Lipid Res       Date:  2018-02-08       Impact factor: 5.922

Review 8.  Tear lipocalin: structure and function.

Authors:  Darlene A Dartt
Journal:  Ocul Surf       Date:  2011-07       Impact factor: 5.033

9.  An amphipathic helical region of the N-terminal barrel of phospholipid transfer protein is critical for ABCA1-dependent cholesterol efflux.

Authors:  John F Oram; Gertrud Wolfbauer; Chongren Tang; W Sean Davidson; John J Albers
Journal:  J Biol Chem       Date:  2008-02-19       Impact factor: 5.157

10.  Haptoglobin inhibits phospholipid transfer protein activity in hyperlipidemic human plasma.

Authors:  Ryan J Henderson; Kishor M Wasan; Carlos G Leon
Journal:  Lipids Health Dis       Date:  2009-07-23       Impact factor: 3.876

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