AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES

It is proposed that polyhydroxylated alkaloids inhibit glycosidase activity by a mechanism which suggests that the enzyme-catalysed hydrolysis of some glycosides may proceed by cleavage of the endocyclic (ring) carbon-oxygen bond, rather than the exocyclic (anomeric) carbon-oxygen bond. © 1985.

Bibliographic Details
Main Author: Fleet, G
Format: Journal article
Language:English
Published: 1985
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author Fleet, G
author_facet Fleet, G
author_sort Fleet, G
collection OXFORD
description It is proposed that polyhydroxylated alkaloids inhibit glycosidase activity by a mechanism which suggests that the enzyme-catalysed hydrolysis of some glycosides may proceed by cleavage of the endocyclic (ring) carbon-oxygen bond, rather than the exocyclic (anomeric) carbon-oxygen bond. © 1985.
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spelling oxford-uuid:b6427796-f037-4b96-9b2e-2e37405d3c822022-03-27T04:39:39ZAN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASESJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:b6427796-f037-4b96-9b2e-2e37405d3c82EnglishSymplectic Elements at Oxford1985Fleet, GIt is proposed that polyhydroxylated alkaloids inhibit glycosidase activity by a mechanism which suggests that the enzyme-catalysed hydrolysis of some glycosides may proceed by cleavage of the endocyclic (ring) carbon-oxygen bond, rather than the exocyclic (anomeric) carbon-oxygen bond. © 1985.
spellingShingle Fleet, G
AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES
title AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES
title_full AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES
title_fullStr AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES
title_full_unstemmed AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES
title_short AN ALTERNATIVE PROPOSAL FOR THE MODE OF INHIBITION OF GLYCOSIDASE ACTIVITY BY POLYHYDROXYLATED PIPERIDINES, PYRROLIDINES AND INDOLIZIDINES - IMPLICATIONS FOR THE MECHANISM OF ACTION OF SOME GLYCOSIDASES
title_sort alternative proposal for the mode of inhibition of glycosidase activity by polyhydroxylated piperidines pyrrolidines and indolizidines implications for the mechanism of action of some glycosidases
work_keys_str_mv AT fleetg analternativeproposalforthemodeofinhibitionofglycosidaseactivitybypolyhydroxylatedpiperidinespyrrolidinesandindolizidinesimplicationsforthemechanismofactionofsomeglycosidases
AT fleetg alternativeproposalforthemodeofinhibitionofglycosidaseactivitybypolyhydroxylatedpiperidinespyrrolidinesandindolizidinesimplicationsforthemechanismofactionofsomeglycosidases