Zhang Siyi, Shi Mingjun, Hui Chi-Chung, Rommens Johanna M
Research Institute, Program in Genetics and Genomic Biology, Room 15-313 TMDT, 101 College Street, East Tower, Toronto, Ontario M5G 1L7, Canada.
Mol Cell Biol. 2006 Sep;26(17):6656-63. doi: 10.1128/MCB.00091-06.
Mutations in SBDS are responsible for Shwachman-Diamond syndrome (SDS), a disorder with clinical features of exocrine pancreatic insufficiency, bone marrow failure, and skeletal abnormalities. SBDS is a highly conserved protein whose function remains largely unknown. We identified and investigated the expression pattern of the murine ortholog. Variation in levels was observed, but Sbds was found to be expressed in all embryonic stages and most adult tissues. Higher expression levels were associated with rapid proliferation. A targeted disruption of Sbds was generated in order to understand the consequences of its loss in an in vivo model. Consistent with recessive disease inheritance for SDS, Sbds(+/-) mice have normal phenotypes, indistinguishable from those of their wild-type littermates. However, the development of Sbds(-/-) embryos arrests prior to embryonic day 6.5, with muted epiblast formation leading to early lethality. This finding is consistent with the absence of patients who are homozygous for early truncating mutations. Sbds is an essential gene for early mammalian development, with an expression pattern consistent with a critical role in cell proliferation.
SBDS基因的突变会导致施瓦赫曼-戴蒙德综合征(SDS),这是一种具有外分泌胰腺功能不全、骨髓衰竭和骨骼异常等临床特征的疾病。SBDS是一种高度保守的蛋白质,其功能在很大程度上仍不清楚。我们鉴定并研究了小鼠直系同源基因的表达模式。观察到其水平存在差异,但发现Sbds在所有胚胎阶段和大多数成年组织中均有表达。较高的表达水平与快速增殖相关。为了了解其在体内模型中缺失的后果,我们构建了Sbds的靶向敲除模型。与SDS的隐性疾病遗传一致,Sbds(+/-)小鼠具有正常表型,与野生型同窝小鼠无法区分。然而,Sbds(-/-)胚胎在胚胎第6.5天之前发育停滞,上胚层形成减弱导致早期死亡。这一发现与不存在早期截短突变纯合子患者的情况一致。Sbds是哺乳动物早期发育的必需基因,其表达模式与在细胞增殖中的关键作用一致。