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鉴定 CYCLE 靶标,其在蚊虫库蚊中贡献了昼夜节律的多种特征。

Identification of CYCLE targets that contribute diverse features of circadian rhythms in the mosquito Culex pipiens.

机构信息

Department of Biology, Baylor University, Waco, TX 76798, USA. Electronic address: https://twitter.com/@Prabin_988.

Department of Biology, Baylor University, Waco, TX 76798, USA.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2023 Dec;48:101140. doi: 10.1016/j.cbd.2023.101140. Epub 2023 Sep 4.

DOI:10.1016/j.cbd.2023.101140
PMID:37690215
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10841209/
Abstract

Culex pipiens demonstrates robust circadian rhythms in adult eclosion, flight activity, mating, and development. These rhythmic patterns are believed to be controlled by the endogenous light-entrainable circadian clock that consists of positive and negative regulators working in a transcription-translation feedback loop. Moreover, these mosquitoes undergo seasonal diapause in exposure to the short photoperiod of late summer or early fall. However, the exact genetic and cellular mechanism behind the clock gene-mediated activity pattern, seasonal time measurement, and subsequent diapause initiation still need to be unraveled. To determine the possible linkage between clock genes and downstream processes, here we employed ChIP-sequencing to identify the direct targets of one of the core clock proteins, Cycle (CYC). The nearest genes with peaks mapping to their 1Kb upstream region of the transcription start site were extracted and scanned for consensus E box sequences, resulting in a dataset comprising the target genes possibly regulated by CYC. Based on the highest fold enrichment and functional relevance, we identified genes relating to five gene categories of potential interest, including peptide/receptors, neurotransmission, olfaction, immunity, and reproductive growth. Of these, we validated fourteen genes with ChIP-qPCR and qRT-PCR. These genes showed a significantly high expression in dusk compared to dawn in concert with the activity level of the CYC transcription factor and are thus strong candidates for mediating circadian rhythmicity and possibly regulating seasonal shifts in mosquito reproductive activity.

摘要

库蚊成虫的出蛰、飞行活动、交配和发育均表现出较强的昼夜节律。这些节律模式被认为是由内源性光控生物钟控制的,该生物钟由在转录-翻译反馈环中起作用的正、负调控因子组成。此外,这些蚊子在夏末或初秋的短光照期会经历季节性休眠。然而,时钟基因介导的活动模式、季节性时间测定以及随后休眠启动背后的确切遗传和细胞机制仍有待阐明。为了确定时钟基因与下游过程之间的可能联系,我们在这里采用 ChIP-seq 来鉴定核心生物钟蛋白 Cycle(CYC)的直接靶标。提取并扫描转录起始位点上游 1kb 区域映射到峰的最接近基因,以获得可能受 CYC 调控的靶基因数据集。基于最高的倍丰度富集和功能相关性,我们鉴定了与五个潜在感兴趣的基因类别相关的基因,包括肽/受体、神经传递、嗅觉、免疫和生殖生长。在这些基因中,我们通过 ChIP-qPCR 和 qRT-PCR 验证了 14 个基因。这些基因在黄昏时的表达显著高于黎明时的表达,与 CYC 转录因子的活性水平一致,因此是介导昼夜节律和可能调节蚊子生殖活动季节性变化的强候选基因。

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