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5TGL

A MODEL FOR INTERFACIAL ACTIVATION IN LIPASES FROM THE STRUCTURE OF A FUNGAL LIPASE-INHIBITOR COMPLEX

Summary for 5TGL
Entry DOI10.2210/pdb5tgl/pdb
DescriptorLIPASE, N-HEXYLPHOSPHONATE ETHYL ESTER (2 entities in total)
Functional Keywordshydrolase(carboxylic esterase)
Biological sourceRhizomucor miehei (Mucor miehei)
Total number of polymer chains1
Total formula weight29718.16
Authors
Brzozowski, A.M.,Derewenda, U.,Derewenda, Z.S.,Dodson, G.G.,Lawson, D.,Turkenburg, J.P.,Bjorkling, F.,Huge-Jensen, B.,Patkar, S.R.,Thim, L. (deposition date: 1991-10-30, release date: 1994-01-31, Last modification date: 2024-03-06)
Primary citationBrzozowski, A.M.,Derewenda, U.,Derewenda, Z.S.,Dodson, G.G.,Lawson, D.M.,Turkenburg, J.P.,Bjorkling, F.,Huge-Jensen, B.,Patkar, S.A.,Thim, L.
A model for interfacial activation in lipases from the structure of a fungal lipase-inhibitor complex.
Nature, 351:491-494, 1991
Cited by
PubMed Abstract: Lipases are hydrolytic enzymes which break down triacylglycerides into free fatty acids and glycerols. They have been classified as serine hydrolases owing to their inhibition by diethyl p-nitrophenyl phosphate. Lipase activity is greatly increased at the lipid-water interface, a phenomenon known as interfacial activation. X-ray analysis has revealed the atomic structures of two triacylglycerol lipases, unrelated in sequence: the human pancreatic lipase (hPL)4, and an enzyme isolated from the fungus Rhizomucor (formerly Mucor) miehei (RmL). In both enzymes the active centres contain structurally analogous Asp-His-Ser triads (characteristic of serine proteinases), which are buried completely beneath a short helical segment, or 'lid'. Here we present the crystal structure (at 3 A resolution) of a complex of R. miehei lipase with n-hexylphosphonate ethyl ester in which the enzyme's active site is exposed by the movement of the helical lid. This movement also increases the nonpolarity of the surface surrounding the catalytic site. We propose that the structure of the enzyme in this complex is equivalent to the activated state generated by the oil-water interface.
PubMed: 2046751
DOI: 10.1038/351491a0
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3 Å)
Structure validation

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数据于2024-10-30公开中

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