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FOXR1 调节应激反应途径,是大脑正常发育所必需的。

FOXR1 regulates stress response pathways and is necessary for proper brain development.

机构信息

Department of Biology, Boston University, Boston, Massachusetts, United States of America.

Bioinformatics Program, Boston University, Boston, Massachusetts, United States of America.

出版信息

PLoS Genet. 2021 Nov 1;17(11):e1009854. doi: 10.1371/journal.pgen.1009854. eCollection 2021 Nov.

Abstract

The forkhead box (Fox) family of transcription factors are highly conserved and play essential roles in a wide range of cellular and developmental processes. We report an individual with severe neurological symptoms including postnatal microcephaly, progressive brain atrophy and global developmental delay associated with a de novo missense variant (M280L) in the FOXR1 gene. At the protein level, M280L impaired FOXR1 expression and induced a nuclear aggregate phenotype due to protein misfolding and proteolysis. RNAseq and pathway analysis showed that FOXR1 acts as a transcriptional activator and repressor with central roles in heat shock response, chaperone cofactor-dependent protein refolding and cellular response to stress pathways. Indeed, FOXR1 expression is increased in response to cellular stress, a process in which it directly controls HSPA6, HSPA1A and DHRS2 transcripts. The M280L mutant compromises FOXR1's ability to respond to stress, in part due to impaired regulation of downstream target genes that are involved in the stress response pathway. Quantitative PCR of mouse embryo tissues show Foxr1 expression in the embryonic brain. Using CRISPR/Cas9 gene editing, we found that deletion of mouse Foxr1 leads to a severe survival deficit while surviving newborn Foxr1 knockout mice have reduced body weight. Further examination of newborn Foxr1 knockout brains revealed a decrease in cortical thickness and enlarged ventricles compared to littermate wild-type mice, suggesting that loss of Foxr1 leads to atypical brain development. Combined, these results suggest FOXR1 plays a role in cellular stress response pathways and is necessary for normal brain development.

摘要

叉头框(Fox)转录因子家族高度保守,在广泛的细胞和发育过程中发挥着重要作用。我们报道了一名个体,其具有严重的神经症状,包括出生后小头畸形、进行性脑萎缩和全面发育迟缓,与 FOXR1 基因中的从头错义变异(M280L)有关。在蛋白质水平上,M280L 损害了 FOXR1 的表达,并由于蛋白质错误折叠和蛋白水解诱导核聚集体表型。RNAseq 和途径分析表明,FOXR1 作为转录激活剂和抑制剂发挥作用,在热休克反应、伴侣辅助因子依赖性蛋白质重折叠和细胞应激途径中具有核心作用。事实上,FOXR1 的表达在细胞应激时增加,这一过程中它直接控制 HSPA6、HSPA1A 和 DHRS2 转录本。M280L 突变体损害了 FOXR1 对应激的反应能力,部分原因是其对下游靶基因的调节受损,这些基因参与应激反应途径。对小鼠胚胎组织的定量 PCR 显示 Foxr1 在胚胎大脑中的表达。使用 CRISPR/Cas9 基因编辑,我们发现删除小鼠 Foxr1 导致严重的生存缺陷,而存活的新生 Foxr1 敲除小鼠体重减轻。对新生 Foxr1 敲除小鼠大脑的进一步检查显示,与同窝野生型小鼠相比,皮质厚度减小,脑室增大,表明 Foxr1 的缺失导致了异常的大脑发育。综合这些结果表明,FOXR1 在细胞应激反应途径中发挥作用,是正常大脑发育所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad1d/8559929/5995b8177cf3/pgen.1009854.g001.jpg

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