Department of Biological Sciences, University of North Texas, Denton, TX 76203, USA.
Mol Biol Cell. 2010 Mar 1;21(5):712-24. doi: 10.1091/mbc.e09-09-0787. Epub 2010 Jan 6.
Oxygen, an essential nutrient, is sensed by a multiple of cellular pathways that facilitate the responses to and survival of oxygen deprivation. The Caenorhabditis elegans embryo exposed to severe oxygen deprivation (anoxia) enters a state of suspended animation in which cell cycle progression reversibly arrests at specific stages. The mechanisms regulating interphase, prophase, or metaphase arrest in response to anoxia are not completely understood. Characteristics of arrested prophase blastomeres and oocytes are the alignment of condensed chromosomes at the nuclear periphery and an arrest of nuclear envelope breakdown. Notably, anoxia-induced prophase arrest is suppressed in mutant embryos lacking nucleoporin NPP-16/NUP50 function, indicating that this nucleoporin plays an important role in prophase arrest in wild-type embryos. Although the inactive form of cyclin-dependent kinase (CDK-1) is detected in wild-type-arrested prophase blastomeres, the inactive state is not detected in the anoxia exposed npp-16 mutant. Furthermore, we found that CDK-1 localizes near chromosomes in anoxia-exposed embryos. These data support the notion that NPP-16 and CDK-1 function to arrest prophase blastomeres in C. elegans embryos. The anoxia-induced shift of cells from an actively dividing state to an arrested state reveals a previously uncharacterized prophase checkpoint in the C. elegans embryo.
氧气是一种必需的营养物质,可被多种细胞途径感知,这些途径有助于对缺氧的反应和生存。暴露于严重缺氧(缺氧)的秀丽隐杆线虫胚胎进入休眠状态,在此状态下,细胞周期进程在特定阶段可逆地停止。调节间期、前期或中期因缺氧而停止的机制尚未完全理解。被阻断的前期卵裂球和卵母细胞的特征是浓缩染色体在核周缘的排列以及核膜破裂的停止。值得注意的是,在缺乏核孔蛋白 NPP-16/NUP50 功能的突变体胚胎中,缺氧诱导的前期阻滞被抑制,表明该核孔蛋白在野生型胚胎中的前期阻滞中发挥重要作用。尽管在野生型被阻断的前期卵裂球中检测到细胞周期蛋白依赖性激酶(CDK-1)的无活性形式,但在缺氧暴露的 npp-16 突变体中未检测到无活性状态。此外,我们发现 CDK-1 在缺氧暴露的胚胎中定位于染色体附近。这些数据支持 NPP-16 和 CDK-1 可在秀丽隐杆线虫胚胎中阻止前期卵裂球的观点。缺氧引起的细胞从活跃分裂状态到阻滞状态的转变揭示了秀丽隐杆线虫胚胎中以前未表征的前期检查点。