Vaccaro M C, Wilding M, Dale B, Campanella C, Carotenuto R
Department of Structural and Functional Biology, University of Naples Federico II, Italy.
Zygote. 2012 Aug;20(3):237-42. doi: 10.1017/S0967199411000037. Epub 2011 Apr 15.
In Xenopus laevis oocytes a mitochondrial cloud (MC) is found between the nucleus and the plasma membrane at stages I-II of oogenesis. The MC contains RNAs that are transported to the future vegetal pole at stage II of oogenesis. In particular, germinal plasm mRNAs are found in the Message Transport Organiser (METRO) region, the MC region opposite to the nucleus. At stages II-III, a second pathway transports Vg1 and VegT mRNAs to the area where the MC content merges with the vegetal cortex. Microtubules become polarized at the sites of migration of Vg1 and VegT mRNAs through an unknown signalling mechanism. In early meiotic stages, the centrioles are almost completely lost with their remnants being dispersed into the cytoplasm and the MC, which may contain a MTOC to be used in the later localization pathway of the mRNAs. In mammals, XNOA 36 encodes a member of a highly conserved protein family and localises to the nucleolus or in the centromeres. In the Xenopus late stage I oocyte, XNOA 36 mRNA is transiently segregated in one half of the oocyte, anchored by a cytoskeletal network that contains spectrin. Here we found that XNOA 36 transcript also localises to the nucleoli and in the METRO region. XNOA 36 protein immunolocalization, using an antibody employed for the library immunoscreening that depicted XNOA 36 expression colonies, labels the migrating MC, the cytoplasm of stage I oocytes and in particular the vegetal cortex facing the MC. The possible role of XNOA 36 in mRNA anchoring to the vegetal cortex or in participating in early microtubule reorganization is discussed.
在非洲爪蟾卵母细胞中,线粒体云(MC)在卵子发生的I-II期位于细胞核与质膜之间。线粒体云含有在卵子发生II期被转运至未来植物极的RNA。特别地,生殖质mRNA存在于信息转运组织者(METRO)区域,即与细胞核相对的线粒体云区域。在II-III期,第二条途径将Vg1和VegT mRNA转运至线粒体云内容物与植物皮质融合的区域。微管通过未知的信号机制在Vg1和VegT mRNA迁移的位点发生极化。在减数分裂早期,中心粒几乎完全消失,其残余物分散到细胞质和线粒体云中,线粒体云可能含有一个微管组织中心,用于mRNA后期的定位途径。在哺乳动物中,XNOA 36编码一个高度保守的蛋白质家族的成员,并定位于核仁或着丝粒。在非洲爪蟾I期晚期卵母细胞中,XNOA 36 mRNA短暂地分离在卵母细胞的一半中,由一个含有血影蛋白的细胞骨架网络锚定。在这里我们发现,XNOA 36转录本也定位于核仁以及METRO区域。使用用于文库免疫筛选以描绘XNOA 36表达菌落的抗体进行的XNOA 36蛋白免疫定位,标记了迁移的线粒体云、I期卵母细胞的细胞质,特别是面向线粒体云的植物皮质。本文讨论了XNOA 36在mRNA锚定到植物皮质或参与早期微管重组中的可能作用。