Reversible G1 arrest by dimethyl sulfoxide as a new method to synchronize Chinese hamster cells

被引:47
作者
Fiore, M [1 ]
Zanier, R [1 ]
Degrassi, F [1 ]
机构
[1] Univ Roma La Sapienza, Dipartimento Genet & Biol Mol, CNR, Ctr Evolutionary Genet, I-00185 Rome, Italy
关键词
D O I
10.1093/mutage/17.5.419
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Dimethyl sulfoxide (DMSO), a well-known differentiation inducer in several myeloid cells, also induces a reversible G(1) arrest in many cell lines. We recently showed that DMSO induces a G(1) phase arrest in Chinese hamster ovary (CHO) cells, by restoring contact inhibition and preventing high density-dependent apoptosis. CHO cells are frequently used in cell biology and mutagenesis studies due to their good growth capacity and ease of manipulation but are very difficult to synchronize by serum starvation since they detach from monolayers when they reach confluence. In this study we investigated the possibility of using DMSO to reversibly synchronize CHO cells in the G(1) phase of the cell cycle and analysed whether toxic effects follow the arrest using growth curve, sister chromatid exchange and micronuclei assays. We carried out a kinetic analysis of the arrest by DMSO and re-entry into the cell cycle after drug release by cytofluorimetric analysis of DNA content and bromodeoxyuridine incorporation. We show that CHO cells are efficiently and reversibly arrested in G(1) by DMSO in concentrations ranging between 1 and 2%. In our experiments, >90% of cells grown for 96 h in presence of the drug were arrested in G(1) and synchronously re-entered S phase sim;8-12 h after release. Furthermore, expression levels of p27 were down-regulated during G(1) progression and cyclin D3 and E expression patterns were similar to those observed after serum starvation. No detectable cytotoxicity or genetic damage were induced in G(1) released cells as revealed by the tests employed. Our results show that DMSO is a very powerful inducer of G(1) synchronization in CHO cells without detectable cytotoxic or genetic effects in cell populations released from G(1) arrest. DMSO synchronization represents a model system in which to analyse protein activities regulating G(1) progression and investigate the response of G(1) cells to mutagen treatments.
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收藏
页码:419 / 424
页数:6
相关论文
共 26 条
[11]   D-TYPE CYCLIN-DEPENDENT KINASE-ACTIVITY IN MAMMALIAN-CELLS [J].
MATSUSHIME, H ;
QUELLE, DE ;
SHURTLEFF, SA ;
SHIBUYA, M ;
SHERR, CJ ;
KATO, JY .
MOLECULAR AND CELLULAR BIOLOGY, 1994, 14 (03) :2066-2076
[12]   Treatment of mammalian cells with mimosine generates DNA breaks [J].
Mikhailov, I ;
Russev, G ;
Anachkova, B .
MUTATION RESEARCH-DNA REPAIR, 2000, 459 (04) :299-306
[13]   P27(KIP1), A CYCLIN-CDK INHIBITOR, LINKS TRANSFORMING GROWTH-FACTOR-BETA AND CONTACT INHIBITION TO CELL-CYCLE ARREST [J].
POLYAK, K ;
KATO, JY ;
SOLOMON, MJ ;
SHERR, CJ ;
MASSAGUE, J ;
ROBERTS, JM ;
KOFF, A .
GENES & DEVELOPMENT, 1994, 8 (01) :9-22
[14]   Early G1 growth arrest of hybridoma B cells by DMSO involves cyclin D2 inhibition and p21[CIP1] induction [J].
Ponzio, G ;
Loubat, A ;
Rochet, N ;
Turchi, L ;
Rezzonico, R ;
Far, DF ;
Dulic, V ;
Rossi, B .
ONCOGENE, 1998, 17 (09) :1159-1166
[15]   RELATIONSHIPS BETWEEN CELL KILLING, MUTATION-INDUCTION AND DNA DAMAGE IN X-IRRADIATED V79 CELLS - THE INFLUENCE OF OXYGEN AND DMSO [J].
SAPORA, O ;
BARONE, F ;
BELLI, M ;
MAGGI, A ;
QUINTILIANI, M ;
TABOCCHINI, MA .
INTERNATIONAL JOURNAL OF RADIATION BIOLOGY, 1991, 60 (03) :467-482
[16]   REVERSIBLE G1 ARREST IN THE CELL-CYCLE OF HUMAN LYMPHOID-CELL LINES BY DIMETHYL-SULFOXIDE [J].
SAWAI, M ;
TAKASE, K ;
TERAOKA, H ;
TSUKADA, K .
EXPERIMENTAL CELL RESEARCH, 1990, 187 (01) :4-10
[17]   CDK inhibitors:: positive and negative regulators of G1-phase progression [J].
Sherr, CJ ;
Roberts, JM .
GENES & DEVELOPMENT, 1999, 13 (12) :1501-1512
[18]   MECHANISMS OF INHIBITION OF FREE-RADICAL PROCESSES IN MUTAGENESIS AND CARCINOGENESIS [J].
SIMIC, MG .
MUTATION RESEARCH, 1988, 202 (02) :377-386
[19]   DIMETHYL-SULFOXIDE INHIBITS THE EXPRESSION OF EARLY GROWTH-RESPONSE GENES AND ARRESTS FIBROBLASTS AT QUIESCENCE [J].
SRINIVAS, S ;
SIRONMANI, TA ;
SHANMUGAM, G .
EXPERIMENTAL CELL RESEARCH, 1991, 196 (02) :279-286
[20]  
TAKASE K, 1992, CELL GROWTH DIFFER, V3, P515