Hoang A T, Huang J, Rudra-Ganguly N, Zheng J, Powell W C, Rabindran S K, Wu C, Roy-Burman P
Department of Pathology, University of Southern California School of Medicine, Los Angeles, California 90033, USA.
Am J Pathol. 2000 Mar;156(3):857-64. doi: 10.1016/S0002-9440(10)64954-1.
A search for differentially expressed genes in a pair of nonmetastatic (PC-3) versus metastatic variant (PC-3M) human prostate carcinoma cell lines led to identification of the human heat shock factor (HSF1) as an overexpressed gene product in PC-3M cells. Analysis of primary prostate cancer specimens indicated that HSF1 is generally up-regulated in most of the malignant prostate epithelial cells relative to the normal prostate cells. Among the known effectors of HSF1 action, constitutive levels of HSP70 and HSP90 are not significantly altered by the naturally elevated expression of HSF1 as in PC-3M cells or by transduced overexpression of HSF1 in PC-3 cells. The basal levels of HSP27 in both cases are, however, consistently increased by two- to threefold. With respect to response to heat shock, high basal concentration of HSP90 is not further enhanced in these cells, and HSP70 is up-regulated irrespective of HSF1 level. Heat shock, however, causes an increase in HSP27 when HSF1 is up-regulated, except when the expression of HSF1 is already too high. These results document for the first time that HSF1 is overexpressed in human prostate cancer cells, at least one consequence of which in the prostate cancer cell lines tested is stimulation of both basal and stress-induced expression of HSP27, an important factor in cell growth, differentiation, or apoptosis.
在一对非转移性(PC-3)与转移性变体(PC-3M)人前列腺癌细胞系中寻找差异表达基因,结果鉴定出人类热休克因子(HSF1)是PC-3M细胞中过表达的基因产物。对原发性前列腺癌标本的分析表明,相对于正常前列腺细胞,HSF1在大多数恶性前列腺上皮细胞中普遍上调。在已知的HSF1作用效应物中,HSP70和HSP90的组成水平在PC-3M细胞中HSF1自然升高的表达或在PC-3细胞中转导过表达HSF1的情况下,均未发生显著改变。然而,在这两种情况下,HSP27的基础水平均持续升高了两到三倍。关于对热休克的反应,这些细胞中HSP90的高基础浓度并未进一步升高,并且无论HSF1水平如何,HSP70均会上调。然而,当HSF1上调时,热休克会导致HSP27增加,除非HSF1的表达已经过高。这些结果首次证明HSF1在人前列腺癌细胞中过表达,在测试的前列腺癌细胞系中,其至少一个后果是刺激HSP27的基础表达和应激诱导表达,HSP27是细胞生长、分化或凋亡中的一个重要因子。