Literature DB >> 19860440

Dynamics of activation of lecithin:cholesterol acyltransferase by apolipoprotein A-I.

Martin K Jones1, Andrea Catte, Ling Li, Jere P Segrest.   

Abstract

The product of transesterification of phospholipid acyl chains and unesterified cholesterol (UC) by the enzyme lecithin:cholesterol acyltransferase (LCAT) is cholesteryl ester (CE). Activation of LCAT by apolipoprotein (apo) A-I on nascent (discoidal) high-density lipoproteins (HDL) is essential for formation of mature (spheroidal) HDL during the antiatherogenic process of reverse cholesterol transport. Here we report all-atom and coarse-grained (CG) molecular dynamics (MD) simulations of HDL particles that have major implications for mechanisms of LCAT activation. Both the all-atom and CG simulations provide support for a model in which the helix 5/5 domains of apoA-I create an amphipathic "presentation tunnel" that exposes methyl ends of acyl chains at the bilayer center to solvent. Further, CG simulations show that UC also becomes inserted with high efficiency into the amphipathic presentation tunnel with its hydroxyl moiety (UC-OH) exposed to solvent; these results are consistent with trajectory analyses of the all-atom simulations showing that UC is being concentrated in the vicinity of the presentation tunnel. Finally, consistent with known product inhibition of CE-rich HDL by CE, CG simulations of CE-rich spheroidal HDL indicate partial blockage of the amphipathic presentation tunnel by CE. These results lead us to propose the following working hypothesis. After attachment of LCAT to discoidal HDL, the helix 5/5 domains in apoA-I form amphipathic presentation tunnels for migration of hydrophobic acyl chains and amphipathic UC from the bilayer to the phospholipase A2-like and esterification active sites of LCAT, respectively. This hypothesis is currently being tested by site-directed mutagenesis.

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Year:  2009        PMID: 19860440      PMCID: PMC2814595          DOI: 10.1021/bi901242k

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  66 in total

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5.  Structural determination of lipid-bound ApoA-I using fluorescence resonance energy transfer.

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Journal:  J Biol Chem       Date:  2000-11-24       Impact factor: 5.157

Review 6.  The amphipathic helix in the exchangeable apolipoproteins: a review of secondary structure and function.

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Authors:  D W Borhani; D P Rogers; J A Engler; C G Brouillette
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  26 in total

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5.  "Sticky" and "promiscuous", the yin and yang of apolipoprotein A-I termini in discoidal high-density lipoproteins: a combined computational-experimental approach.

Authors:  Martin K Jones; Feifei Gu; Andrea Catte; Ling Li; Jere P Segrest
Journal:  Biochemistry       Date:  2011-03-04       Impact factor: 3.162

6.  A robust all-atom model for LCAT generated by homology modeling.

Authors:  Jere P Segrest; Martin K Jones; Andrea Catte; Saravana P Thirumuruganandham
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7.  An Evaluation of the Crystal Structure of C-terminal Truncated Apolipoprotein A-I in Solution Reveals Structural Dynamics Related to Lipid Binding.

Authors:  John T Melchior; Ryan G Walker; Jamie Morris; Martin K Jones; Jere P Segrest; Diogo B Lima; Paulo C Carvalho; Fábio C Gozzo; Mark Castleberry; Thomas B Thompson; W Sean Davidson
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8.  Arginine 123 of apolipoprotein A-I is essential for lecithin:cholesterol acyltransferase activity.

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