Lee Min-Ho, Ohmachi Mitsue, Arur Swathi, Nayak Sudhir, Francis Ross, Church Diane, Lambie Eric, Schedl Tim
Department of Genetics, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Genetics. 2007 Dec;177(4):2039-62. doi: 10.1534/genetics.107.081356.
The raison d'etre of the germline is to produce oocytes and sperm that pass genetic material and cytoplasmic constituents to the next generation. To achieve this goal, many developmental processes must be executed and coordinated. ERK, the terminal MAP kinase of a number of signaling pathways, controls many aspects of development. Here we present a comprehensive analysis of MPK-1 ERK in Caenorhabditis elegans germline development. MPK-1 functions in four developmental switches: progression through pachytene, oocyte meiotic maturation/ovulation, male germ cell fate specification, and a nonessential function of promoting the proliferative fate. MPK-1 also regulates multiple aspects of cell biology during oogenesis, including membrane organization and morphogenesis: organization of pachytene cells on the surface of the gonadal tube, oocyte organization and differentiation, oocyte growth control, and oocyte nuclear migration. MPK-1 activation is temporally/spatially dynamic and most processes appear to be controlled through sustained activation. MPK-1 thus may act not only in the control of individual processes but also in the coordination of contemporaneous processes and the integration of sequential processes. Knowledge of the dynamic activation and diverse functions of MPK-1 provides the foundation for identification of upstream signaling cascades responsible for region-specific activation and the downstream substrates that mediate the various processes.
生殖系的存在意义在于产生将遗传物质和细胞质成分传递给下一代的卵母细胞和精子。为实现这一目标,必须执行和协调许多发育过程。ERK作为多个信号通路的终端丝裂原活化蛋白激酶,控制着发育的许多方面。在此,我们对秀丽隐杆线虫生殖系发育中的MPK-1 ERK进行了全面分析。MPK-1在四个发育转换中发挥作用:粗线期进程、卵母细胞减数分裂成熟/排卵、雄性生殖细胞命运决定以及促进增殖命运的非必需功能。MPK-1还在卵子发生过程中调节细胞生物学的多个方面,包括膜组织和形态发生:性腺管表面粗线期细胞的组织、卵母细胞组织和分化、卵母细胞生长控制以及卵母细胞核迁移。MPK-1的激活在时间/空间上具有动态性,大多数过程似乎通过持续激活来控制。因此,MPK-1不仅可能在控制单个过程中起作用,还可能在协调同期过程和整合连续过程中起作用。对MPK-1动态激活和多样功能的了解为鉴定负责区域特异性激活的上游信号级联以及介导各种过程的下游底物奠定了基础。