Molecular Mechanisms Program, Centro de Investigación del Cáncer and Instituto de Biología Molecular y Celular del Cáncer (onsejo Superior de Investigaciones Científicas-Universidad de Salamanca), 37007 Salamanca, Spain.
Department of Totipotency, Max Planck Institute of Biochemistry, 82152 Martinsried, Germany.
Proc Natl Acad Sci U S A. 2024 Jun 18;121(25):e2320995121. doi: 10.1073/pnas.2320995121. Epub 2024 Jun 12.
Meiosis, a reductional cell division, relies on precise initiation, maturation, and resolution of crossovers (COs) during prophase I to ensure the accurate segregation of homologous chromosomes during metaphase I. This process is regulated by the interplay of RING-E3 ligases such as RNF212 and HEI10 in mammals. In this study, we functionally characterized a recently identified RING-E3 ligase, RNF212B. RNF212B colocalizes and interacts with RNF212, forming foci along chromosomes from zygonema onward in a synapsis-dependent and DSB-independent manner. These consolidate into larger foci at maturing COs, colocalizing with HEI10, CNTD1, and MLH1 by late pachynema. Genetically, RNF212B foci formation depends on but not on , and , while the unloading of RNF212B at the end of pachynema is dependent on and . Mice lacking RNF212B, or expressing an inactive RNF212B protein, exhibit modest synapsis defects, a reduction in the localization of pro-CO factors (MSH4, TEX11, RPA, MZIP2) and absence of late CO-intermediates (MLH1). This loss of most COs by diakinesis results in mostly univalent chromosomes. Double mutants for and exhibit an identical phenotype to that of single mutants, while double heterozygous demonstrate a dosage-dependent reduction in CO number, indicating a functional interplay between paralogs. SUMOylome analysis of testes from mutants and pull-down analysis of Sumo- and Ubiquitin-tagged HeLa cells, suggest that RNF212B is an E3-ligase with Ubiquitin activity, serving as a crucial factor for CO maturation. Thus, RNF212 and RNF212B play vital, yet overlapping roles, in ensuring CO homeostasis through their distinct E3 ligase activities.
减数分裂是一种减数分裂,依赖于前期 I 中精确的起始、成熟和交叉(COs)的解决,以确保中期 I 中同源染色体的准确分离。这个过程受到 RING-E3 连接酶如哺乳动物中的 RNF212 和 HEI10 的相互作用调节。在这项研究中,我们对最近鉴定的 RING-E3 连接酶 RNF212B 进行了功能表征。RNF212B 与 RNF212 共定位并相互作用,从合线期开始,以联会依赖性和 DSB 非依赖性的方式在染色体上形成焦点。这些焦点在成熟 CO 中合并成更大的焦点,与 HEI10、CNTD1 和 MLH1 在晚期粗线期共定位。遗传上,RNF212B 焦点形成取决于 但不取决于 、 、 ,而在粗线期末端 RNF212B 的卸载取决于 和 。缺乏 RNF212B 或表达无活性 RNF212B 蛋白的小鼠表现出适度的联会缺陷,减少前 CO 因子(MSH4、TEX11、RPA、MZIP2)的定位和晚期 CO 中间产物(MLH1)的缺失。这种减数分裂前期二价染色体的丢失导致大多数单价染色体。 和 双突变体表现出与 单突变体相同的表型,而双杂合子则表现出 CO 数量的剂量依赖性减少,表明旁系同源物之间存在功能相互作用。RNF212B 突变体睾丸的 SUMOylome 分析和 Sumo 和泛素标记的 HeLa 细胞的下拉分析表明,RNF212B 是一种具有泛素活性的 E3 连接酶,是 CO 成熟的关键因素。因此,RNF212 和 RNF212B 通过其独特的 E3 连接酶活性,在确保 CO 动态平衡方面发挥着重要但重叠的作用。