Widlak Wieslawa, Vydra Natalia, Malusecka Ewa, Dudaladava Volha, Winiarski Boleslaw, Scieglińska Dorota, Widlak Piotr
Department of Tumor Biology, Maria Sklodowksa-Curie Memorial Cancer Center and Institute of Oncology, Gliwice Branch, 44-101 Gliwice, Poland.
Genes Cells. 2007 Apr;12(4):487-99. doi: 10.1111/j.1365-2443.2007.01069.x.
Expression of constitutively active heat shock transcription factor 1 (HSF1) in mouse spermatocytes induces apoptosis and leads to male infertility. We report here that prior to the onset of massive apoptosis caused by expression of active HSF1 in spermatocytes a marked reduction in spermatocyte-specific Hsp70.2 mRNA and protein levels occurs. In addition, HSP70.2 protein relocalizes from a predominant cytoplasmic to a nuclear position in developing spermatocytes that express active HSF1. Later in the developmental stages, cells undergoing HSF1-induced apoptosis essentially lack the HSP70.2 protein. The down-regulation of Hsp70.2 gene expression by HSF1 is paradoxical because HSF1 is the prototypical activator of HSP genes. Furthermore, HSF1-mediated repression neither involved a heat shock element (HSE)-like sequence adjacent to the Hsp70.2 gene nor were Hsp70.2 promoter sequences associated directly with HSF1. Interestingly, other spermatocyte- and spermatid-specific transcripts are also down-regulated in testes of transgenic mice expressing active HSF1, suggesting involvement of a putative HSF1-dependent block of development of spermatogenic cells. Importantly however, transcription of the Hsp70.2 gene is down-regulated in testes of wild-type mice subjected to a hyperthermia that induces transient activation of HSF1, indicating that the spermatocyte-specific activity of HSF1 might misdirect a network of transcription factors required for proper regulation of Hsp70.2.
在小鼠精母细胞中组成型激活热休克转录因子1(HSF1)的表达会诱导细胞凋亡并导致雄性不育。我们在此报告,在精母细胞中由活性HSF1表达引起的大量细胞凋亡开始之前,精母细胞特异性Hsp70.2 mRNA和蛋白质水平会显著降低。此外,在表达活性HSF1的发育中的精母细胞中,HSP70.2蛋白从主要的细胞质位置重新定位到细胞核位置。在发育后期,经历HSF1诱导凋亡的细胞基本上缺乏HSP70.2蛋白。HSF1对Hsp70.2基因表达的下调是自相矛盾的,因为HSF1是HSP基因的典型激活剂。此外,HSF1介导的抑制既不涉及与Hsp70.2基因相邻的热休克元件(HSE)样序列,Hsp70.2启动子序列也不直接与HSF1相关。有趣的是,在表达活性HSF1的转基因小鼠的睾丸中,其他精母细胞和精子细胞特异性转录本也下调,这表明可能存在一种依赖HSF1的生精细胞发育阻滞。然而,重要的是,在经历热激从而诱导HSF1瞬时激活的野生型小鼠的睾丸中,Hsp70.2基因的转录被下调,这表明HSF1的精母细胞特异性活性可能会错误引导对Hsp70.2进行适当调控所需的转录因子网络。