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Linking maternal and somatic 5S rRNA types with different sequence-specific non-LTR retrotransposons

机译:将母体和体细胞5S rRNA类型与不同序列特异性的非LTR逆转座子连接起来

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摘要

5S rRNA is a ribosomal core component, transcribed from many gene copies organized in genomic repeats. Some eukaryotic species have two 5S rRNA types defined by their predominant expression in oogenesis or adult tissue. Our next-generation sequencing study on zebrafish egg, embryo, and adult tissue identified maternal-type 5S rRNA that is exclusively accumulated during oogenesis, replaced throughout the embryogenesis by a somatic-type, and thus virtually absent in adult somatic tissue. The maternal-type 5S rDNA contains several thousands of gene copies on chromosome 4 in tandem repeats with small intergenic regions, whereas the somatic-type is present in only 12 gene copies on chromosome 18 with large intergenic regions. The nine-nucleotide variation between the two 5S rRNA types likely affects TFIII binding and riboprotein L5 binding, probably leading to storage of maternal-type rRNA. Remarkably, these sequence differences are located exactly at the sequence-specific target site for genome integration by the 5S rRNA-specific Mutsu retrotransposon family. Thus, we could define maternal- and somatic-type MutsuDr subfamilies. Furthermore, we identified four additional maternal-type and two new somatic-type MutsuDr subfamilies, each with their own target sequence. This target-site specificity, frequently intact maternal-type retrotransposon elements, plus specific presence of Mutsu retrotransposon RNA and piRNA in egg and adult tissue, suggest an involvement of retrotransposons in achieving the differential copy number of the two types of 5S rDNA loci.
机译:5S rRNA是一种核糖体核心成分,从许多以基因组重复形式组织的基因拷贝中转录而成。一些真核生物具有两种5S rRNA类型,这两种类型由它们在卵子发生或成年组织中的主要表达定义。我们对斑马鱼卵,胚胎和成年组织进行的下一代测序研究确定了母体型5S rRNA,该5S rRNA在卵子发生过程中完全积累,在整个胚胎发生过程中被体细胞型取代,因此实际上在成人体细胞组织中不存在。母本型5S rDNA在具有小的基因间区域的串联重复序列中的4号染色体上包含数千个基因拷贝,而体细胞型仅存在于具有较大基因间区域的18号染色体上的12个基因拷贝中。两种5S rRNA类型之间的9个核苷酸变异可能影响TFIII结合和核糖蛋白L5结合,可能导致母体型rRNA的储存。值得注意的是,这些序列差异恰好位于5S rRNA特异性Mutsu反转录转座子家族进行基因组整合的序列特异性靶位点。因此,我们可以定义母体型和体型的MutsuDr亚科。此外,我们鉴定了另外四个母亲型和两个新的体细胞型MutsuDr亚家族,每个亚家族都有自己的靶序列。这种靶位点特异性,通常是完整的母体型反转录转座子元件,再加上蛋和成年组织中的Mutsu逆转座子RNA和piRNA的特定存在,表明逆转座子参与了实现5S rDNA两种基因型的差异拷贝数。

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