褐家鼠减数分裂细胞中RTEL1解旋酶的动态变化:前期时空分布。

IF 1.7 4区 生物学 Q4 CELL BIOLOGY
Sergey N Matveevsky, Yuri F Bogdanov
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引用次数: 0

摘要

DNA解旋酶对保持基因组完整性和保证减数分裂的正确进行至关重要。尽管它们具有公认的意义,但这些酶在减数分裂前期I的确切作用和空间动力学仍未被广泛探索。方法:免疫细胞化学染色法和统计学评价法是本研究的主要方法。结果:我们的研究结果表明,RTEL1存在于刚刚启动突触的区域,强调染色体突触不仅对这种解旋酶至关重要,而且对参与减数分裂过程的其他蛋白质也可能至关重要。由于RTEL1和复制蛋白A (RPA)先前被证明在体细胞中共定位,我们试图评估减数分裂中的这种关系。在粗期早期,当RTEL1和RPA水平处于峰值时,这些蛋白的几个免疫灶表现出完全或部分重叠,表明在某些染色体区域共定位,尽管有些区域仍然不同。RPA在减数分裂核中的早期出现支持了它可能促进RTEL1募集用于DNA修复的概念。随着减数分裂从粗线期早期发展到二倍体期,RTEL1和RPA信号的显著减少强调了它们在前期I的主要作用。结论:本研究确定RTEL1是继BLM和FANCJ之后,在前期I检测到的第三个解旋酶,这表明未来可能会有更多的解旋酶被添加到这个序列中。它独特的突触依赖行为将其与其他两种解旋酶区分开来,这两种解旋酶不表现出这种模式。此外,我们的研究结果表明,RTEL1可以表现出抗重组酶的活性,并作为减数分裂解旋酶复合体的一部分发挥作用,该复合体调节减数分裂过程的关键方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of RTEL1 helicase in meiotic cells: spatiotemporal distribution during prophase I in the rat Rattus norvegicus.

Introduction: DNA helicases are vital for preserving genome integrity and ensuring the correct process of meiosis. Despite their recognized significance, the precise roles and spatial dynamics of these enzymes during meiotic prophase I remain largely unexplored.

Methods: The key methodology of this study consisted of immunocytochemical staining and statistical evaluation.

Results: Our results demonstrate that RTEL1 is present in regions that have just initiated synapsis, emphasizing that chromosome synapsis is not only essential for this helicase but potentially for other proteins involved in meiotic processes. Since RTEL1 and replication protein A (RPA) were previously shown to colocalize in somatic cells, we sought to assess this relationship in meiosis. During early pachytene, when RTEL1 and RPA levels are at their peak, several immunofoci of these proteins exhibited complete or partial overlap, suggesting colocalization in some chromosomal regions, though some remained distinct. The earlier appearance of RPA in meiotic nuclei supports the notion that it may facilitate RTEL1 recruitment for DNA repair. As meiosis progresses from early pachytene to diplotene, the significant decrease in RTEL1 and RPA signals underscores their predominant involvement in early prophase I.

Conclusion: This study identifies RTEL1 as the third helicase, following BLM and FANCJ, to be detected in prophase I, suggesting that additional helicases may be added to this list in the future. Its unique synapsis-dependent behavior distinguishes it from the other two helicases, which do not exhibit such a pattern. Furthermore, our findings suggest that RTEL1 can demonstrates antirecombinase activity and functions as part of the meiotic helicase complex, which regulates critical aspects of meiotic processes.

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来源期刊
Cytogenetic and Genome Research
Cytogenetic and Genome Research 生物-细胞生物学
CiteScore
3.10
自引率
5.90%
发文量
25
审稿时长
1 months
期刊介绍: During the last decades, ''Cytogenetic and Genome Research'' has been the leading forum for original reports and reviews in human and animal cytogenetics, including molecular, clinical and comparative cytogenetics. In recent years, most of its papers have centered on genome research, including gene cloning and sequencing, gene mapping, gene regulation and expression, cancer genetics, comparative genetics, gene linkage and related areas. The journal also publishes key papers on chromosome aberrations in somatic, meiotic and malignant cells. Its scope has expanded to include studies on invertebrate and plant cytogenetics and genomics. Also featured are the vast majority of the reports of the International Workshops on Human Chromosome Mapping, the reports of international human and animal chromosome nomenclature committees, and proceedings of the American and European cytogenetic conferences and other events. In addition to regular issues, the journal has been publishing since 2002 a series of topical issues on a broad variety of themes from cytogenetic and genome research.
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