Yin Yizhi, Donlevy Sean, Smolikove Sarit
Department of Biology, University of Iowa, Iowa City, Iowa 52242.
Department of Biology, University of Iowa, Iowa City, Iowa 52242
Genetics. 2016 Jan;202(1):45-59. doi: 10.1534/genetics.115.177295. Epub 2015 Oct 28.
Meiosis is a tightly regulated process requiring coordination of diverse events. A conserved ERK/MAPK-signaling cascade plays an essential role in the regulation of meiotic progression. The Thousand And One kinase (TAO) kinase is a MAPK kinase kinase, the meiotic role of which is unknown. We have analyzed the meiotic functions of KIN-18, the homolog of mammalian TAO kinases, in Caenorhabditis elegans. We found that KIN-18 is essential for normal meiotic progression; mutants exhibit accelerated meiotic recombination as detected both by analysis of recombination intermediates and by crossover outcome. In addition, ectopic germ-cell differentiation and enhanced levels of apoptosis were observed in kin-18 mutants. These defects correlate with ectopic activation of MPK-1 that includes premature, missing, and reoccurring MPK-1 activation. Late progression defects in kin-18 mutants are suppressed by inhibiting an upstream activator of MPK-1 signaling, KSR-2. However, the acceleration of recombination events observed in kin-18 mutants is largely MPK-1-independent. Our data suggest that KIN-18 coordinates meiotic progression by modulating the timing of MPK-1 activation and the progression of recombination events. The regulation of the timing of MPK-1 activation ensures the proper timing of apoptosis and is required for the formation of functional oocytes. Meiosis is a conserved process; thus, revealing that KIN-18 is a novel regulator of meiotic progression in C. elegans would help to elucidate TAO kinase's role in germline development in higher eukaryotes.
减数分裂是一个受到严格调控的过程,需要协调各种不同的事件。保守的ERK/MAPK信号级联在减数分裂进程的调控中起着至关重要的作用。千与一激酶(TAO)激酶是一种MAPK激酶激酶,其在减数分裂中的作用尚不清楚。我们分析了秀丽隐杆线虫中哺乳动物TAO激酶同源物KIN-18的减数分裂功能。我们发现KIN-18对于正常的减数分裂进程至关重要;通过对重组中间体的分析和交叉结果检测发现,突变体表现出加速的减数分裂重组。此外,在kin-18突变体中观察到异位生殖细胞分化和凋亡水平升高。这些缺陷与MPK-1的异位激活相关,包括MPK-1的过早、缺失和再次激活。通过抑制MPK-1信号的上游激活剂KSR-2,可以抑制kin-18突变体中的后期进程缺陷。然而,在kin-18突变体中观察到的重组事件加速在很大程度上不依赖于MPK-1。我们的数据表明,KIN-18通过调节MPK-1激活的时间和重组事件的进程来协调减数分裂进程。MPK-1激活时间的调控确保了凋亡的正确时间,并且是功能性卵母细胞形成所必需的。减数分裂是一个保守的过程;因此,揭示KIN-18是秀丽隐杆线虫减数分裂进程的一种新型调节因子,将有助于阐明TAO激酶在高等真核生物生殖系发育中的作用。