ISOLATION OF A CHINESE-HAMSTER OVARY CELL CLONE POSSESSING DECREASED MU-CALPAIN CONTENT AND A REDUCED PROLIFERATIVE GROWTH-RATE

Citation
Rl. Mellgren et al., ISOLATION OF A CHINESE-HAMSTER OVARY CELL CLONE POSSESSING DECREASED MU-CALPAIN CONTENT AND A REDUCED PROLIFERATIVE GROWTH-RATE, The Journal of biological chemistry, 271(26), 1996, pp. 15568-15574
Citations number
43
Categorie Soggetti
Biology
ISSN journal
00219258
Volume
271
Issue
26
Year of publication
1996
Pages
15568 - 15574
Database
ISI
SICI code
0021-9258(1996)271:26<15568:IOACOC>2.0.ZU;2-D
Abstract
A Chinese hamster ovary cell line (CHOP) was cultured in the presence of benzyloxycarbonyl-Leu-Leu-Tyr diazomethyl ketone (ZLLY-CHN2), to se lect for resistance to this cell-permeant calpain inhibitor, A clone i solated after several courses of exposure (SHI cells) demonstrated dec reased sensitivity to ZLLY-CHN2 toxicity and a decreased growth rate, SHI cells also possessed less mu-calpain isozyme relative to CHOP cell s, as determined by activity measurement or by protein immunoblotting. Activities of m-calpain, calpastatin, cathepsin B, cathepsin L, and g lycogen phosphorylase were not altered, SHI mu-calpain was partially p urified by sequential chromatography on Bio-Gel A-1.5m and DEAE-Sephar ose. Its chromatographic behavior in either system was the same as for CHOP mu-calpain, Further studies with the partially purified SHI and CHOP mu-calpain fractions failed to distinguish any difference in Ca2 requirement or in sensitivity to inhibition by calpastatin or ZLLY-CH N2 for these enzymes, These experiments suggest that SHI cells underpr oduce a form of mu-calpain which is very similar to, if not identical with, CHOP mu-calpain. SHI cells displayed a population doubling time of 29 h compared with 19 h for CHOP cells, The decreased growth rate o f SHI cells was the result of a prolonged G(1) phase, Introduction of purified human mu-calpain into SHI cells by electroporation transientl y restored the growth rate and also increased toxicity associated with exposure to ZLLY-CHN2. SHI cells should be a valuable model in furthe r studies to delineate the function of mu-calpain in cell proliferativ e growth.