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1.
Biochim Biophys Acta ; 1734(1): 62-73, 2005 May 01.
Article in English | MEDLINE | ID: mdl-15866484

ABSTRACT

Site-directed mutagenesis of rat hepatic neutral cytosolic cholesteryl ester hydrolase (rhncCEH) was used to substitute acidic, basic or neutral amino acid residues for Ser506, required for activation by protein kinase A. The substitution of acidic Asp506 resulted in esterase activities with cholesteryl oleate, p-nitrophenylcaprylate (PNPC) and p-nitrophenylacetate (PNPA) equivalent to those of native rhncCEH with Ser506. The substitution of 2 acidic residues (Asp505/506), emulating the 2 negative charges of phosphoserine, resulted in a 10-fold greater cholesterol esterase activity than that of native rhncCEH, similar to the activity of rhncCEH treated with protein kinase A. In contrast to mutants with Ser506, protein kinase A did not increase the specific activities of mutants with Asp505/506. The substitution of basic (Lys506) or neutral (Asn506) residues abolished activity with cholesteryl oleate but not PNPC or PNPA. The substitution of neutral Gln for basic residues Lys496/Arg503 also abolished cholesterol esterase activity but not PNPC- and PNPA-esterase activities. These structure-activity relationships are modeled by homology with a recently reported crystal structure for the homologous human triacylglycerol hydrolase. The results suggest that the cholesterol esterase activity of carboxylesterases is enhanced by interactions between one or more basic residues on helix alpha16 (residues 485-503) and acidic groups at residues 505-506 in the adjacent surface loop.


Subject(s)
Amino Acid Substitution/genetics , Cytosol/enzymology , Liver/enzymology , Sterol Esterase/chemistry , Amino Acid Sequence , Amino Acids/chemistry , Amino Acids/genetics , Animals , Binding Sites/genetics , Humans , Kinetics , Molecular Sequence Data , Phosphorylation , Protein Structure, Secondary , Protein Structure, Tertiary , Rats , Sterol Esterase/genetics , Structural Homology, Protein , Structure-Activity Relationship , Substrate Specificity/genetics
2.
J Biol Chem ; 276(35): 33165-74, 2001 Aug 31.
Article in English | MEDLINE | ID: mdl-11429416

ABSTRACT

Site-directed mutagenesis is used to identify amino acid residues that dictate reported differences in substrate specificity between rat hepatic neutral cytosolic cholesteryl ester hydrolase (hncCEH) and rat lung carboxylesterase (LCE), proteins differing by only 4 residues in their primary sequences. Beginning with LCE, the substitution Met(423) --> Ile(423) alone or in combination with other mutations increased activity with p-nitrophenylcaprylate (PNPC) relative to more hydrophilic p-nitrophenylacetate (PNPA), typical of hncCEH. The substitution Thr(444) --> Met(444) was necessary but not sufficient for expression of cholesteryl esterase activity in COS-7 cells. The substitution Asn(506) --> Ser(506), creating a potential phosphorylation site, uniformly increased activity with both PNPA and PNPC, was necessary but not sufficient for expression of cholesteryl esterase activity and conferred susceptibility to activation by cAMP-dependent protein kinase, a property of hncCEH. The 3 mutations in combination were necessary and sufficient for expression of cholesteryl esterase activity by the mutated LCE. The substitution Gln(186) --> Arg(186) selectively reduced esterase activity with PNPA and PNPC but was not required for cholesteryl esterase activity. Homology modeling from x-ray structures of acetylcholinesterases is used to propose three-dimensional models for hncCEH and LCE that provide insight into the effects of these mutations on substrate specificity.


Subject(s)
Carboxylic Ester Hydrolases/chemistry , Carboxylic Ester Hydrolases/metabolism , Cyclic AMP-Dependent Protein Kinases/metabolism , Lung/enzymology , Sterol Esterase/metabolism , Acetylcholinesterase/chemistry , Amino Acid Sequence , Amino Acid Substitution , Animals , Asparagine , Carboxylesterase , Cloning, Molecular , Cytosol/enzymology , DNA, Complementary , Enzyme Activation , Humans , Isoleucine , Liver/enzymology , Methionine , Models, Molecular , Molecular Sequence Data , Mutagenesis, Site-Directed , Phosphorylation , Protein Structure, Secondary , Rats , Recombinant Proteins/chemistry , Recombinant Proteins/metabolism , Sequence Alignment , Sequence Homology, Amino Acid , Serine , Threonine
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