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PMID: 10455188 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Three isoforms of mammalian hyaluronan synthases have distinct enzymatic properties.

The Journal of biological chemistry ·Vol. 274 ·No. 35 ·1999-08-27 ·Pages 25085-92

Itano N, Sawai T, Yoshida M, Lenas P, Yamada Y, Imagawa M, Shinomura T, Hamaguchi M, Yoshida Y, Ohnuki Y, Miyauchi S, Spicer AP, McDonald JA, Kimata K

Abstract

Three mammalian hyaluronan synthase genes, HAS1, HAS2, and HAS3, have recently been cloned. In this study, we characterized and compared the enzymatic properties of these three HAS proteins. Expression of any of these genes in COS-1 cells or rat 3Y1 fibroblasts yielded de novo formation of a hyaluronan coat. The pericellular coats formed by HAS1 transfectants were significantly smaller than those formed by HAS2 or HAS3 transfectants. Kinetic studies of these enzymes in the membrane fractions isolated from HAS transfectants demonstrated that HAS proteins are distinct from each other in enzyme stability, elongation rate of HA, and apparent K(m) values for the two substrates UDP-GlcNAc and UDP-GlcUA. Analysis of the size distributions of hyaluronan generated in vitro by the recombinant proteins demonstrated that HAS3 synthesized hyaluronan with a molecular mass of 1 x 10(5) to 1 x 10(6) Da, shorter than those synthesized by HAS1 and HAS2 which have molecular masses of 2 x 10(5) to approximately 2 x 10(6) Da. Furthermore, comparisons of hyaluronan secreted into the culture media by stable HAS transfectants showed that HAS1 and HAS3 generated hyaluronan with broad size distributions (molecular masses of 2 x 10(5) to approximately 2 x 10(6) Da), whereas HAS2 generated hyaluronan with a broad but extremely large size (average molecular mass of >2 x 10(6) Da). The occurrence of three HAS isoforms with such distinct enzymatic characteristics may provide the cells with flexibility in the control of hyaluronan biosynthesis and functions.

MeSH Terms
Animals Cell Line Enzyme Stability Gene Expression Glucuronosyltransferase/chemistry,genetics Glycosyltransferases Hyaluronan Synthases Hyaluronic Acid/biosynthesis,chemistry Isoenzymes/chemistry Kinetics Membrane Proteins Microscopy, Phase-Contrast Recombinant Proteins/chemistry Substrate Specificity Transfection Transferases Uridine Diphosphate Glucuronic Acid/metabolism Uridine Diphosphate N-Acetylglucosamine/metabolism Xenopus Proteins
Chemicals
Isoenzymes Membrane Proteins Recombinant Proteins Xenopus Proteins Uridine Diphosphate Glucuronic Acid Uridine Diphosphate N-Acetylglucosamine Hyaluronic Acid Transferases Glycosyltransferases Glucuronosyltransferase HAS1 protein, Xenopus Has2 protein, Xenopus Has2 protein, rat Has3 protein, rat Hyaluronan Synthases
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Itano N
Institute for Molecular Science of Medicine, Aichi Medical University, Yazako, Nagakute, Aichi 480-1195, Japan.
Sawai T
Yoshida M
Lenas P
Yamada Y
Imagawa M
Shinomura T
Hamaguchi M
Yoshida Y
Ohnuki Y
Miyauchi S
Spicer A P
McDonald J A
Kimata K
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1999-08-27
Pages
25085-92
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIAMS NIH HHS · 1RO1AR44698 · United States
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