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[黄粉虫卵黄生成期卵母细胞染色体外核结构域中的多聚腺苷酸化RNA和mRNA输出因子]

[Polyadenylated RNA and mRNA export factors in extrachromosomal nuclear domains of vitellogenic oocytes of the insect Tenebrio molitor].

作者信息

Bogoliubov D S, Kiselev A M, Shabel'nikov S V, Parfenov V N

出版信息

Tsitologiia. 2012;54(6):497-507.

Abstract

The nucleus ofvitellogenic oocytes of the yellow mealworm, Tenebrio molitor, contains a karyosphere that consists of the condensed chromatin embedded in an extrachromosomal fibrogranular material. Numerous nuclear bodies located freely in the nucleoplasm are also observed. Amongst these bodies, counterparts of nuclear speckles (= interchromatin granule clusters, IGCs) can be identified by the presence of the marker protein SC35. Microinjections of fluorescently tagged methyloligoribonucleotide probes 2'-O-Me(U)22, complementary to poly(A) tails of RNAs, revealed poly(A)+ RNA in the vast majority of IGCs. We found that all T. molitor oocyte IGCs contain heterogeneous ribonucleoprotein (hnRNP) core protein Al that localizes to IGCs in an RNA-dependent manner. The extrachromosomal material of the karyosphere and a part of nucleoplasmic IGCs also contain the adapter protein Aly that is known to provide a link between pre-mRNA splicing and mRNA export. The essential mRNA export factor/receptor NXF1 was observed to colocalize with Aly. In nucleoplasmic IGCs, NXF1 was found to localize in an RNA-dependent manner whereas it is RNA-independently located in the extrachromosomal material of the karyosphere. We believe our data suggest on a role of the nucleoplasmic IGCs in mRNA biogenesis and retention in a road to nuclear export.

摘要

黄粉虫(Tenebrio molitor)卵黄生成期卵母细胞的细胞核含有一个核球,它由嵌入染色体外纤维颗粒物质中的浓缩染色质组成。还观察到许多自由位于核质中的核体。在这些核体中,通过标记蛋白SC35的存在可以鉴定出核斑点(=染色质间颗粒簇,IGCs)的对应物。对与RNA的聚腺苷酸尾互补的荧光标记甲基寡核糖核苷酸探针2'-O-Me(U)22进行显微注射,结果显示绝大多数IGCs中存在聚腺苷酸+RNA。我们发现,所有黄粉虫卵母细胞IGCs都含有异质性核糖核蛋白(hnRNP)核心蛋白A1,该蛋白以RNA依赖的方式定位于IGCs。核球的染色体外物质和部分核质IGCs还含有衔接蛋白Aly,已知该蛋白在mRNA前体剪接和mRNA输出之间提供联系。观察到必需的mRNA输出因子/受体NXF1与Aly共定位。在核质IGCs中,发现NXF1以RNA依赖的方式定位,而在核球的染色体外物质中,它以RNA非依赖的方式定位。我们认为,我们的数据表明核质IGCs在mRNA生物合成以及在通向核输出的过程中的保留方面发挥了作用。

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