Mivechi N F, Monson J M, Hahn G M
Department of Radiation Oncology, Stanford University School of Medicine, California 94305.
Cancer Res. 1991 Dec 15;51(24):6608-14.
Leukemic cells appear to develop less thermotolerance and then to lose their thermotolerance more rapidly than do other tumor cell lines. The reason for this phenomenon is not known. After heat shock (or other environmental stresses), mammalian cells preferentially synthesize a set of proteins known as heat shock proteins (HSPs). HSP-28 and the various isoforms of HSP-70 have been suggested as being responsible for the development of thermotolerance. In these studies, we have attempted to determine by their expression with HSPs positively correlate with the development and decay of thermotolerance and whether the expression of these genes could explain the differing thermotolerance response observed between leukemic and nonleukemic tumor cells. Polymerase chain reaction was used to detect the expression of HSP-28 and several HSP-70 genes. Our data indicate that the expression of all three heat-inducible HSP-70 genes, 70A (Hunt and Morimoto, Proc. Natl. Acad. Sci. USA, 82: 6455-6459, 1985), 70B (Voellmy et al., Proc. Natl. Acad. Sci. USA, 82: 4949-4953, 1985), and 70B' (Leung et al., Biochem J., 267: 125-132, 1990) correlate with the development and decay of thermotolerance in nonleukemic tumor cell lines after heat or arsenite treatment. HSP-28 (Hickey et al., Nucleic Acids Res., 4: 4127-4145, 1986) failed to correlate with thermotolerance development; it was not induced after 45 degrees C primary heat shock. In leukemic cells, however, none of the HSPs were induced for extended periods of time. The lack of coordinate expression of HSP genes in cells of myeloid origin may explain the poor induction and maintenance of thermotolerance that is observed in these cells.
白血病细胞似乎比其他肿瘤细胞系产生的热耐受性更低,且热耐受性丧失得更快。这种现象的原因尚不清楚。热休克(或其他环境应激)后,哺乳动物细胞优先合成一组被称为热休克蛋白(HSPs)的蛋白质。有人认为HSP-28和HSP-70的各种同工型与热耐受性的产生有关。在这些研究中,我们试图确定它们的表达是否与热耐受性的产生和衰减呈正相关,以及这些基因的表达是否能解释白血病和非白血病肿瘤细胞之间观察到的不同热耐受性反应。采用聚合酶链反应检测HSP-28和几个HSP-70基因的表达。我们的数据表明,所有三个热诱导型HSP-70基因,即70A(亨特和森本,《美国国家科学院院刊》,82: 6455 - 6459, 1985)、70B(沃尔米尔等人,《美国国家科学院院刊》,82: 4949 - 4953, 1985)和70B'(梁等人,《生物化学杂志》,267: 125 - 132, 1990),在热或亚砷酸盐处理后的非白血病肿瘤细胞系中,其表达与热耐受性的产生和衰减相关。HSP-28(希基等人,《核酸研究》,4: 4127 - 4145, 1986)与热耐受性的产生无关;在45摄氏度的初次热休克后未被诱导。然而,在白血病细胞中,没有一种HSPs能被长时间诱导。髓系来源细胞中HSP基因缺乏协同表达可能解释了在这些细胞中观察到的热耐受性诱导和维持较差的现象。