非阻塞性无精子症(NOA)的转录组学分析以解决人类睾丸中的基因表达调控。

IF 2.1 4区 医学 Q3 ANDROLOGY
Govindkumar Balagannavar, Kavyashree Basavaraju, Akhilesh Kumar Bajpai, Sravanthi Davuluri, Shruthi Kannan, Vasan S Srini, Darshan S Chandrashekar, Neelima Chitturi, Kshitish K Acharya
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引用次数: 0

摘要

有必要了解非阻塞性无精子症(NOA)下睾丸的分子基础,这是一种精子发生失败的状态。在选择性剪接mrna (isomrnas)水平上的转录组和基因表达调控机制一直缺乏关注。因此,我们旨在建立一个可靠的noa -睾丸的iso-mRNA谱,并探讨分子机制,特别是与基因表达调控有关的机制。我们对精子发生完全的供者睾丸样本(对照样本)和精子发生失败的供者睾丸样本(NOA样本)的mrna进行了测序。我们通过标准的NGS数据分析鉴定了差异表达基因及其异质mrna。然后,我们根据样本和组间差异数量的一致性程度,分层列出了这些iso- mrna,并通过rt - qpcr验证了这些列表(针对80个iso- mrna)。此外,我们对剪接特征、结构域、相互作用和差异表达基因和异质mrna的功能进行了广泛的生物信息学分析。许多排名靠前的下调基因和异质mrna,即在NOA样本中更一致下调的基因和异质mrna,与有丝分裂、复制、减数分裂、纤毛、RNA调节和翻译后修饰(如泛素化和磷酸化)有关。大多数下调的iso- mrna对应于包含所有预期结构域的全长蛋白。这些异构体mrna中替代启动子和终止位点的优势表明它们的基因表达通过启动子和utr进行调控。我们编制了一份新的、全面的人类转录因子(TF)列表,并利用它来鉴定在NOA条件下,TF-'TF基因'相互作用在下调基因中具有潜在意义。结果表明,HSF4对RAD51的抑制可抑制SP1的激活,SP1可调控多个TF基因。这个潜在的调控轴和本研究中发现的其他TF相互作用可以解释noa -睾丸中多个基因的下调。这种分子相互作用在正常人类精子发生过程中也可能具有关键的调节作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcriptomic analysis of the Non-Obstructive Azoospermia (NOA) to address gene expression regulation in human testis.

There is a need to understand the molecular basis of testes under Non-Obstructive Azoospermia (NOA), a state of failed spermatogenesis. There has been a lack of attention to the transcriptome at the level of alternatively spliced mRNAs (iso-mRNAs) and the mechanism of gene expression regulation. Hence, we aimed to establish a reliable iso-mRNA profile of NOA-testes, and explore molecular mechanisms - especially those related to gene expression regulation. We sequenced mRNAs from testicular samples of donors with complete spermatogenesis (control samples) and a failure of spermatogenesis (NOA samples). We identified differentially expressed genes and their iso-mRNAs via standard NGS data analyses. We then listed these iso-mRNAs hierarchically based on the extent of consistency of differential quantities across samples and groups, and validated the lists via RT-qPCRs (for 80 iso-mRNAs). In addition, we performed extensive bioinformatic analysis of the splicing features, domains, interactions, and functions of differentially expressed genes and iso-mRNAs. Many top-ranking down-regulated genes and iso-mRNAs, i.e., those down-regulated more consistently across the NOA samples, are associated with mitosis, replication, meiosis, cilium, RNA regulation, and post-translational modifications such as ubiquitination and phosphorylation. Most down-regulated iso-mRNAs correspond to full-length proteins that include all expected domains. The predominance of alternative promoters and termination sites in these iso-mRNAs indicate their gene expression regulation via promoters and UTRs. We compiled a new, comprehensive list of human transcription factors (TFs) and used it to identify TF-'TF gene' interactions with potential significance in down-regulating genes under the NOA condition. The results indicate that RAD51 suppression by HSF4 prevents SP1-activation, and SP1, in turn, could regulate multiple TF genes. This potential regulatory axis and other TF interactions identified in this study could explain the down-regulation of multiple genes in NOA-testes. Such molecular interactions may also have key regulatory roles during normal human spermatogenesis.

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来源期刊
CiteScore
4.30
自引率
4.20%
发文量
27
审稿时长
>12 weeks
期刊介绍: Systems Biology in Reproductive Medicine, SBiRM, publishes Research Articles, Communications, Applications Notes that include protocols a Clinical Corner that includes case reports, Review Articles and Hypotheses and Letters to the Editor on human and animal reproduction. The journal will highlight the use of systems approaches including genomic, cellular, proteomic, metabolomic, bioinformatic, molecular, and biochemical, to address fundamental questions in reproductive biology, reproductive medicine, and translational research. The journal publishes research involving human and animal gametes, stem cells, developmental biology and toxicology, and clinical care in reproductive medicine. Specific areas of interest to the journal include: male factor infertility and germ cell biology, reproductive technologies (gamete micro-manipulation and cryopreservation, in vitro fertilization/embryo transfer (IVF/ET) and contraception. Research that is directed towards developing new or enhanced technologies for clinical medicine or scientific research in reproduction is of significant interest to the journal.
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