CELL CYCLE-SPECIFIC EFFECTS OF LOVASTATIN

被引:294
作者
JAKOBISIAK, M
BRUNO, S
SKIERSKI, JS
DARZYNKIEWICZ, Z
机构
[1] SLOAN KETTERING MEM CANC CTR,RYE,NY 10580
[2] NEW YORK MED COLL,CANC RES INST,VALHALLA,NY 10595
关键词
MEVALONIC ACID; P21RAS FARNESYLATION; G1; ARREST; KI-67; ANTIBODY; PROLIFERATION-ASSOCIATED PROTEINS;
D O I
10.1073/pnas.88.9.3628
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Lovastatin (LOV), the drug recently introduced to treat hypercholesteremia, inhibits the synthesis of mevalonic acid. The effects of LOV on the cell cycle progression of the human bladder carcinoma T24 cell line expressing activated p21ras were investigated. At a concentration of 2-10-mu-M, LOV arrested cells in G1 and also prolonged-or arrested a minor fraction of cells in-the G2 phase of the cell cycle; at a concentration of 50-mu-M, LOV was cytotoxic. The cytostatic effects were reversed by addition of exogenous mevalonate. Cells arrested in the cycle by LOV were viable for up to 72 hr and did not show any changes in RNA or protein content or chromatin condensation, which would be typical of either unbalanced growth or deep quiescence. The expression of the proliferation-associated nuclear proteins Ki-67 and p105 in these cells was reduced by up to 72% and 74%, respectively, compared with exponentially growing control cells. After removal of LOV, the cells resumed progression through the cycle; they entered S phase asynchronously after a lag of almost-equal-to 6 hr. Because mevalonate is essential for the posttranslational modification (isoprenylation) of p21ras, which in turn allows this protein to become attached to the cell membrane, the data suggest that the LOV-induced G1 arrest may be a consequence of the loss of the signal transduction capacity of p21ras. Indeed, while exposure of cells to LOV had no effect on the cellular content of p21ras (detected immunocytochemically), it altered the intracellular location of this protein, causing its dissociation from the cell membrane and translocation toward the cytoplasm and nucleus. However, it is also possible that inhibition of isoprenylation of proteins other than p21ras (e.g., nuclear lamins) by LOV may be responsible for the observed suppression of growth of T24 cells.
引用
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页码:3628 / 3632
页数:5
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