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首页> 外文期刊>Developmental biology >Intraflagellar transport protein 172 is essential for primary cilia formation and plays a vital role in patterning the mammalian brain.
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Intraflagellar transport protein 172 is essential for primary cilia formation and plays a vital role in patterning the mammalian brain.

机译:鞭毛内转运蛋白172对初级纤毛的形成至关重要,并且在构图哺乳动物大脑中起着至关重要的作用。

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摘要

IFT172, also known as Selective Lim-domain Binding protein (SLB), is a component of the intraflagellar transport (IFT) complex. In order to evaluate the biological role of the Ift172 gene, we generated a loss-of-function mutation in the mouse. The resulting Slb mutant embryos die between E12.5 and 13.0, and exhibit severe cranio-facial malformations, failure to close the cranial neural tube, holoprosencephaly, heart edema and extensive hemorrhages. Cilia outgrowth in cells of the neuroepithelium is initiated but the axonemes are severely truncated and do not contain visible microtubules. Morphological and molecular analyses revealed a global brain-patterning defect along the dorsal-ventral (DV) and anterior-posterior (AP) axes. We demonstrate that Ift172 gene function is required for early regulation of Fgf8 at the midbrain-hindbrain boundary and maintenance of the isthmic organizer. In addition, Ift172 is required for proper function of the embryonic node, the early embryonic organizer and for formation of the head organizing center (the anterior mesendoderm, or AME). We propose a model suggesting that forebrain and mid-hindbrain growth and AP patterning depends on the early function of Ift172 at gastrulation. Our data suggest that the formation and function of the node and AME in the mouse embryo relies on an indispensable role of Ift172 in cilia morphogenesis and cilia-mediated signaling.
机译:IFT172,也称为选择性Lim域结合蛋白(SLB),是鞭毛内转运(IFT)复合体的组成部分。为了评估Ift172基因的生物学作用,我们在小鼠中产生了功能丧失突变。产生的Slb突变体胚胎在E12.5和13.0之间死亡,并表现出严重的颅面畸形,无法闭合颅神经管,全前脑,心脏水肿和大量出血。纤毛在神经上皮细胞中开始生长,但轴突被严重截断并且不包含可见的微管。形态和分子分析揭示了沿背腹(DV)和前后(AP)轴的整体脑部模式缺陷。我们证明,Ift172基因功能是中脑-后脑边界的Fgf8的早期调节和缺血组织者的维持所必需的。另外,Ift172是胚胎结节,早期胚胎组织者的正常功能和头部组织中心(前中胚层或AME)的形成所必需的。我们提出了一个模型,表明前脑和后中脑的生长以及AP的形成取决于Ift172在促胃作用的早期功能。我们的数据表明,小鼠胚胎中结点和AME的形成和功能依赖于Ift172在纤毛形态发生和纤毛介导的信号传导中不可缺少的作用。

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