Brenner John L, Schedl Tim
Department of Genetics, Washington University School of Medicine, 4515 McKinley, St. Louis, MO, 63110, USA.
Methods Mol Biol. 2016;1457:9-17. doi: 10.1007/978-1-4939-3795-0_2.
Formation of full-grown oocytes requires the control and coordination of a number of processes (e.g., oocyte growth) through multiple stages, where disruption at any one step can result in infertility. Numerous proteins are required for the regulation and execution of the various oogenic processes as well as functioning as maternal products needed for embryogenesis. Immunofluorescence microscopy combined with staining using antibodies against specific proteins, or their posttranslationally modified forms, is a standard approach to determine the temporal and spatial location of gene products that function in oocyte development. The simple linear organization of the germline in the model organism Caenorhabditis elegans allows easy correlation of protein localization and germ cell developmental stage, thus aiding in our understanding of protein function during gametogenesis. Here we outline co-immunofluorescence staining for two major regulators of C. elegans germline development, the translational repressor GLD-1 and activated form of MPK-1 (dpMPK-1) ERK MAP kinase in dissected gonads from adult C. elegans. Worms are first dissected and the extruded gonads are fixed and permeabilized before being bathed in primary antibodies against GLD-1 and dpMPK-1. Secondary antibodies conjugated to fluorophore dyes and that target the IgG domains of the primary antibody reagents are then used to provide a fluorescent signal that corresponds to the position of GLD-1 and dpMPK-1. The outlined procedure is amenable to many other proteins expressed in C. elegans germ cells.
成熟卵母细胞的形成需要在多个阶段对许多过程(如卵母细胞生长)进行控制和协调,其中任何一个步骤的中断都可能导致不孕。各种卵子发生过程的调控和执行以及胚胎发生所需的母体产物的功能都需要众多蛋白质。免疫荧光显微镜结合使用针对特定蛋白质或其翻译后修饰形式的抗体进行染色,是确定在卵母细胞发育中起作用的基因产物的时空定位的标准方法。模式生物秀丽隐杆线虫生殖系的简单线性组织使得蛋白质定位与生殖细胞发育阶段易于关联,从而有助于我们理解配子发生过程中的蛋白质功能。在这里,我们概述了对秀丽隐杆线虫生殖系发育的两个主要调节因子——翻译抑制因子GLD-1和MPK-1的活化形式(dpMPK-1)ERK丝裂原活化蛋白激酶——在成年秀丽隐杆线虫解剖性腺中的共免疫荧光染色。首先解剖线虫,将挤出的性腺固定并通透处理,然后浸泡在针对GLD-1和dpMPK-1的一抗中。接着使用与荧光团染料偶联并靶向一抗试剂IgG结构域的二抗,以提供与GLD-1和dpMPK-1位置相对应的荧光信号。所概述的程序适用于秀丽隐杆线虫生殖细胞中表达的许多其他蛋白质。