Department of Molecular, Cell and Developmental Biology, University of California Santa Cruz, Santa Cruz, CA 95064, USA.
Development. 2011 Mar;138(6):1069-79. doi: 10.1242/dev.059501.
Previous studies demonstrated that a subset of synMuv B mutants ectopically misexpress germline-specific P-granule proteins in their somatic cells, suggesting a failure to properly orchestrate a soma/germline fate decision. Surprisingly, this fate confusion does not affect viability at low to ambient temperatures. Here, we show that, when grown at high temperature, a majority of synMuv B mutants irreversibly arrest at the L1 stage. High temperature arrest (HTA) is accompanied by upregulation of many genes characteristic of germ line, including genes encoding components of the synaptonemal complex and other meiosis proteins. HTA is suppressed by loss of global regulators of germline chromatin, including MES-4, MRG-1, ISW-1 and the MES-2/3/6 complex, revealing that arrest is caused by somatic cells possessing a germline-like chromatin state. Germline genes are preferentially misregulated in the intestine, and necessity and sufficiency tests demonstrate that the intestine is the tissue responsible for HTA. We propose that synMuv B mutants fail to erase or antagonize an inherited germline chromatin state in somatic cells during embryonic and early larval development. As a consequence, somatic cells gain a germline program of gene expression in addition to their somatic program, leading to a mixed fate. Somatic expression of germline genes is enhanced at elevated temperature, leading to developmentally compromised somatic cells and arrest of newly hatched larvae.
先前的研究表明,一小部分 synMuv B 突变体在其体细胞中异位表达生殖细胞特异性 P-颗粒蛋白,这表明它们未能正确协调体/生殖细胞命运决定。令人惊讶的是,这种命运混乱不会影响在低至环境温度下的生存能力。在这里,我们表明,当在高温下生长时,大多数 synMuv B 突变体不可逆地在 L1 阶段停滞。高温停滞(HTA)伴随着许多生殖细胞特征基因的上调,包括编码联会复合体和其他减数分裂蛋白成分的基因。生殖细胞染色质的全局调节剂的缺失抑制了 HTA,包括 MES-4、MRG-1、ISW-1 和 MES-2/3/6 复合物,这表明停滞是由具有生殖细胞样染色质状态的体细胞引起的。生殖细胞基因在肠道中优先被错误调控,并且必要性和充分性测试表明肠道是负责 HTA 的组织。我们提出,在胚胎和早期幼虫发育过程中,synMuv B 突变体不能在体细胞中消除或拮抗遗传的生殖细胞染色质状态。结果,体细胞获得了生殖细胞的基因表达程序,除了它们的体细胞程序外,导致了混合命运。生殖细胞基因的体细胞表达在高温下增强,导致发育受损的体细胞和新孵化幼虫的停滞。