Hospital of Stomatology, Guanghua School of Stomatology, Guangdong Provincial Key Laboratory of Stomatology, Institute of Stomatological Research, Sun Yat-sen University, Guangzhou, Guangdong, China.
Hospital of Stomatology, Orthodontic Department, Guanghua School of Stomatology, Guangdong Provincial Key Laboratory of Stomatology, Sun Yat-sen University, Guangzhou, Guangdong, China.
J Cell Physiol. 2021 Dec;236(12):8208-8225. doi: 10.1002/jcp.30491. Epub 2021 Jun 25.
Cohesin loader nipped-B-like protein (Nipbl) is increasingly recognized for its important role in development and cancer. Cornelia de Lange Syndrome (CdLS), mostly caused by heterozygous mutations of Nipbl, is an autosomal dominant disease characterized by multiorgan malformations. However, the regulatory role and underlying mechanism of Nipbl in skeletal development remain largely elusive. In this study, we constructed a Nipbl-a Cas9-knockout (KO) zebrafish, which displayed severe retardation of global growth and skeletal development. Deficiency of Nipbl remarkably compromised cell growth and survival, and osteogenic differentiation of mammalian osteoblast precursors. Furthermore, Nipbl depletion impaired the cell cycle process, and caused DNA damage accumulation and cellular senescence. In addition, nucleolar fibrillarin expression, global rRNA biogenesis, and protein translation were defective in the Nipbl-depleted osteoblast precursors. Interestingly, an integrated stress response inhibitor (ISRIB), partially rescued Nipbl depletion-induced cellular defects in proliferation and apoptosis, osteogenesis, and nucleolar function. Simultaneously, we performed transcriptome analysis of Nipbl deficiency on human neural crest cells and mouse embryonic fibroblasts in combination with Nipbl ChIP-Seq. We found that Nipbl deficiency caused thousands of differentially expressed genes including some important genes in bone and cartilage development. In conclusion, Nipbl deficiency compromised skeleton development through impairing osteoblast precursor cell proliferation and survival, and osteogenic differentiation, and also disturbing the expression of some osteogenesis-regulatory genes. Our study elucidated that Nipbl played a pivotal role in skeleton development, and supported the fact that treatment of ISRIB may provide an early intervention strategy to alleviate the bone dysplasia of CdLS.
黏连蛋白加载器 NiBp 样蛋白(Nipbl)在发育和癌症中的重要作用越来越受到关注。Cornelia de Lange 综合征(CdLS)主要由 Nipbl 的杂合突变引起,是一种常染色体显性疾病,其特征为多器官畸形。然而,Nipbl 在骨骼发育中的调控作用和潜在机制在很大程度上仍未被揭示。在这项研究中,我们构建了一种 Nipbl-a Cas9 敲除(KO)斑马鱼,其表现出全身性生长和骨骼发育严重迟缓。Nipbl 的缺失显著损害了细胞的生长和存活,以及哺乳动物成骨前体细胞的成骨分化。此外,Nipbl 耗竭破坏了细胞周期过程,并导致 DNA 损伤积累和细胞衰老。此外,在 Nipbl 耗竭的成骨前体细胞中,核仁纤维蛋白表达、全局 rRNA 生物发生和蛋白质翻译受损。有趣的是,一种整合应激反应抑制剂(ISRIB)部分挽救了 Nipbl 耗竭诱导的细胞增殖和凋亡、成骨和核仁功能缺陷。同时,我们对 Nipbl 缺失的人神经嵴细胞和小鼠胚胎成纤维细胞进行了转录组分析,并结合 Nipbl ChIP-Seq。我们发现,Nipbl 缺失导致数千个差异表达基因,包括骨骼和软骨发育中的一些重要基因。总之,Nipbl 缺失通过损害成骨前体细胞的增殖和存活以及成骨分化,并干扰一些成骨调节基因的表达,从而损害骨骼发育。我们的研究阐明了 Nipbl 在骨骼发育中的关键作用,并支持了使用 ISRIB 治疗可能提供一种缓解 CdLS 骨发育不良的早期干预策略的事实。