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Krüppel 样因子 9 的缺失会导致生理基因表达和发育的失调。

Loss of Krüppel-like factor 9 deregulates both physiological gene expression and development.

机构信息

Colby College, Waterville, ME, USA.

MDI Biological Laboratory, Salisbury Cove, ME, USA.

出版信息

Sci Rep. 2023 Jul 28;13(1):12239. doi: 10.1038/s41598-023-39453-3.

Abstract

Krüppel-like factor 9 (Klf9) is a ubiquitously expressed transcription factor that is a feedforward regulator of multiple stress-responsive and endocrine signaling pathways. We previously described how loss of Klf9 function affects the transcriptome of zebrafish larvae sampled at a single time point 5 days post-fertilization (dpf). However, klf9 expression oscillates diurnally, and the sampled time point corresponded to its expression nadir. To determine if the transcriptomic effects of the klf9 mutation vary with time of day, we performed bulk RNA-seq on 5 dpf zebrafish embryos sampled at three timepoints encompassing the predawn peak and midmorning nadir of klf9 expression. We found that while the major effects of the klf9 mutation that we reported previously are robust to time of day, the mutation has additional effects that manifest only at the predawn time point. We used a published single-cell atlas of zebrafish development to associate the effects of the klf9 mutation with different cell types and found that the mutation increased mRNA associated with digestive organs (liver, pancreas, and intestine) and decreased mRNA associated with differentiating neurons and blood. Measurements from confocally-imaged larvae suggest that overrepresentation of liver mRNA in klf9 mutants is due to development of enlarged livers.

摘要

Krüppel 样因子 9(Klf9)是一种普遍表达的转录因子,是多种应激反应和内分泌信号通路的前馈调节因子。我们之前描述了 Klf9 功能丧失如何影响受精后 5 天(dpf)取样的斑马鱼幼虫的转录组。然而,klf9 的表达呈昼夜节律性波动,取样时间点对应其表达的最低点。为了确定 klf9 突变的转录组效应是否随时间变化,我们对包括 klf9 表达的黎明前高峰和上午 10 点低谷在内的三个时间点取样的 5 dpf 斑马鱼胚胎进行了批量 RNA-seq。我们发现,尽管我们之前报道的 klf9 突变的主要影响在一天中的不同时间是稳健的,但该突变还有其他仅在黎明前时间点表现出来的影响。我们使用已发表的斑马鱼发育单细胞图谱将 klf9 突变的影响与不同的细胞类型相关联,并发现该突变增加了与消化器官(肝脏、胰腺和肠道)相关的 mRNA,减少了与分化神经元和血液相关的 mRNA。来自共聚焦成像幼虫的测量结果表明,klf9 突变体中肝脏 mRNA 的过度表达是由于肝脏增大所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d7e/10382561/4c67c902b5a9/41598_2023_39453_Fig1_HTML.jpg

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