Structural insights into lipid-dependent reversible dimerization of human GLTP Journal Article


Authors: Samygina, V. R.; Ochoa-Lizarralde, B.; Popov, A. N.; Cabo-Bilbao, A.; Goni-De-Cerio, F.; Molotkovsky, J. G.; Patel, D. J.; Brown, R. E.; Malinina, L.
Article Title: Structural insights into lipid-dependent reversible dimerization of human GLTP
Abstract: Human glycolipid transfer protein (hsGLTP) forms the prototypical GLTP fold and is characterized by a broad transfer selectivity for glycosphingolipids (GSLs). The GLTP mutation D48V near the 'portal entrance' of the glycolipid binding site has recently been shown to enhance selectivity for sulfatides (SFs) containing a long acyl chain. Here, nine novel crystal structures of hsGLTP and the SF-selective mutant complexed with short-acyl-chain monoSF and diSF in different crystal forms are reported in order to elucidate the potential functional roles of lipid-mediated homodimerization. In all crystal forms, the hsGLTP-SF complexes displayed homodimeric structures supported by similarly organized intermolecular interactions. The dimerization interface always involved the lipid sphingosine chain, the protein C-terminus (C-end) and -helices 6 and 2, but the D48V mutant displayed a 'locked' dimer conformation compared with the hinge-like flexibility of wild-type dimers. Differences in contact angles, areas and residues at the dimer interfaces in the 'flexible' and 'locked' dimers revealed a potentially important role of the dimeric structure in the C-end conformation of hsGLTP and in the precise positioning of the key residue of the glycolipid recognition centre, His140. ΔY207 and ΔC-end deletion mutants, in which the C-end is shifted or truncated, showed an almost complete loss of transfer activity. The new structural insights suggest that ligand-dependent reversible dimerization plays a role in the function of human GLTP. © 2013 International Union of Crystallography Printed in Singapore - all rights reserved.
Keywords: carrier protein; metabolism; protein binding; structure activity relation; structure-activity relationship; physiology; chemistry; protein multimerization; carrier proteins; ligand; ligands; crystallography, x-ray; protein folding; protein secondary structure; x ray crystallography; lipid metabolism; protein structure, secondary; glycosphingolipid; glycolipid transfer protein; gltp protein, human; selectivity; glycosphingolipids; sulfatide; gltp fold; lipid-mediated homodimerization; sulfatides
Journal Title: Acta Crystallographica Section D: Biological Crystallography
Volume: 69
Issue: 4
ISSN: 0907-4449
Publisher: Wiley Blackwell  
Date Published: 2013-04-01
Start Page: 603
End Page: 616
Language: English
PROVIDER: scopus
PMCID: PMC3606038
PUBMED: 23519669
DOI: 10.1107/S0907444913000024
DOI/URL:
Notes: --- - "Export Date: 1 May 2013" - "CODEN: ABCRE" - ":doi 10.1107/S0907444913000024" - "Source: Scopus"
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  1. Dinshaw J Patel
    478 Patel