Department of Biochemistry and Molecular Biology and.
Department of Pediatric and Adolescent Medicine, Mayo Clinic, Rochester, Minnesota, USA.
J Clin Invest. 2018 Aug 1;128(8):3517-3534. doi: 10.1172/JCI120316. Epub 2018 Jul 23.
A homozygous truncating frameshift mutation in CEP57 (CEP57T/T) has been identified in a subset of mosaic-variegated aneuploidy (MVA) patients; however, the physiological roles of the centrosome-associated protein CEP57 that contribute to disease are unknown. To investigate these, we have generated a mouse model mimicking this disease mutation. Cep57T/T mice died within 24 hours after birth with short, curly tails and severely impaired vertebral ossification. Osteoblasts in lumbosacral vertebrae of Cep57T/T mice were deficient for Fgf2, a Cep57 binding partner implicated in diverse biological processes, including bone formation. Furthermore, a broad spectrum of tissues of Cep57T/T mice had severe aneuploidy at birth, consistent with the MVA patient phenotype. Cep57T/T mouse embryonic fibroblasts and patient-derived skin fibroblasts failed to undergo centrosome maturation in G2 phase, causing premature centriole disjunction, centrosome amplification, aberrant spindle formation, and high rates of chromosome missegregation. Mice heterozygous for the truncating frameshift mutation or a Cep57-null allele were overtly indistinguishable from WT mice despite reduced Cep57 protein levels, yet prone to aneuploidization and cancer, with tumors lacking evidence for loss of heterozygosity. This study identifies Cep57 as a haploinsufficient tumor suppressor with biologically diverse roles in centrosome maturation and Fgf2-mediated bone formation.
CEP57 中的纯合移码突变(CEP57T/T)已在马赛克性嵌合体非整倍体(MVA)患者的亚组中被鉴定出来;然而,与疾病相关的中心体相关蛋白 CEP57 的生理作用尚不清楚。为了研究这些作用,我们生成了一种模拟这种疾病突变的小鼠模型。Cep57T/T 小鼠在出生后 24 小时内死亡,尾巴短而卷曲,椎体骨化严重受损。Cep57T/T 小鼠腰骶椎的成骨细胞缺乏 Fgf2,Fgf2 是 Cep57 的结合伴侣,涉及多种生物学过程,包括骨形成。此外,Cep57T/T 小鼠的多种组织在出生时就存在严重的非整倍体,与 MVA 患者表型一致。Cep57T/T 小鼠胚胎成纤维细胞和患者来源的皮肤成纤维细胞在 G2 期无法进行中心体成熟,导致中心粒过早分离、中心体扩增、异常纺锤体形成和染色体错误分离率升高。尽管 Cep57 蛋白水平降低,但杂合移码突变或 Cep57 缺失等位基因的小鼠与 WT 小鼠在外观上没有明显区别,但易发生非整倍体化和癌症,且肿瘤缺乏杂合性丢失的证据。这项研究确定了 Cep57 作为一种单倍不足的肿瘤抑制因子,在中心体成熟和 Fgf2 介导的骨形成中具有多种生物学作用。