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BMP 拮抗作用可保护原肠胚中的 Nodal 信号,促进哺乳动物前脑和颅面模式形成的组织相互作用。

BMP antagonism protects Nodal signaling in the gastrula to promote the tissue interactions underlying mammalian forebrain and craniofacial patterning.

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, NC 27710-3709, USA.

出版信息

Hum Mol Genet. 2010 Aug 1;19(15):3030-42. doi: 10.1093/hmg/ddq208. Epub 2010 May 27.

DOI:10.1093/hmg/ddq208
PMID:20508035
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2901141/
Abstract

Holoprosencephaly (HPE) is the most common forebrain and craniofacial malformation syndrome in humans. The genetics of HPE suggest that it often stems from a synergistic interaction of mutations in independent loci. In mice, several combinations of mutations in Nodal signaling pathway components can give rise to HPE, but it is not clear whether modest deficits of Nodal signaling along with lesions in other pathways might also cause such defects. We find that HPE results from simultaneous reduction of Nodal signaling and an organizer BMP (bone morphogenetic protein) antagonist, either Chordin or Noggin. These defects result from reduced production of tissues that promote forebrain and craniofacial development. Nodal promotes the expression of genes in the anterior primitive streak that are important for the development of these tissues, whereas BMP inhibits their expression. Pharmacological and transgenic manipulation of these signaling pathways suggests that BMP and Nodal antagonize each other prior to intracellular signal transduction. Biochemical experiments in vitro indicate that secreted Bmp2 and Nodal can form extracellular complexes, potentially interfering with receptor activation. Our results reveal that the patterning of forebrain and medial craniofacial elements requires a fine balance between BMP and Nodal signaling during primitive streak development, and provide a potential mechanistic basis for a new multigenic model of HPE.

摘要

前脑和颅面畸形综合征(HPE)是人类最常见的前脑和颅面畸形综合征。HPE 的遗传学表明,它通常源于独立基因座突变的协同相互作用。在小鼠中,几种 Nodal 信号通路成分的突变组合可导致 HPE,但尚不清楚 Nodal 信号的适度缺陷是否会与其他通路的损伤一起导致此类缺陷。我们发现 HPE 是由 Nodal 信号和组织者 BMP(骨形态发生蛋白)拮抗剂的同时减少引起的,该拮抗剂为 Chordin 或 Noggin。这些缺陷是由于促进前脑和颅面发育的组织产生减少所致。Nodal 促进了在这些组织的发育中起重要作用的前原肠胚中基因的表达,而 BMP 则抑制其表达。这些信号通路的药理学和转基因操作表明,BMP 和 Nodal 在细胞内信号转导之前相互拮抗。体外生化实验表明,分泌的 Bmp2 和 Nodal 可以形成细胞外复合物,可能干扰受体激活。我们的研究结果表明,在原始条纹发育过程中,BMP 和 Nodal 之间需要精细的平衡,以调节前脑和中颅面元素的模式,为 HPE 的新多基因模型提供了潜在的机制基础。

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本文引用的文献

1
Roles of bone morphogenetic protein signaling and its antagonism in holoprosencephaly.骨形态发生蛋白信号及其拮抗作用在全前脑畸形中的作用。
Am J Med Genet C Semin Med Genet. 2010 Feb 15;154C(1):43-51. doi: 10.1002/ajmg.c.30256.
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Pathogenesis of holoprosencephaly.全前脑畸形的发病机制。
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BMP/SMAD1 signaling sets a threshold for the left/right pathway in lateral plate mesoderm and limits availability of SMAD4.骨形态发生蛋白/ 信号转导分子1(BMP/SMAD1)信号通路为侧板中胚层的左右轴通路设定了一个阈值,并限制了信号转导分子4(SMAD4)的可用性。
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BMP antagonism is required in both the node and lateral plate mesoderm for mammalian left-right axis establishment.在哺乳动物左右轴建立过程中,节点和侧板中胚层都需要骨形态发生蛋白(BMP)拮抗作用。
Development. 2008 Aug;135(14):2425-34. doi: 10.1242/dev.018986. Epub 2008 Jun 11.
6
Reduced NODAL signaling strength via mutation of several pathway members including FOXH1 is linked to human heart defects and holoprosencephaly.通过包括FOXH1在内的多个信号通路成员的突变导致NODAL信号强度降低,这与人类心脏缺陷和全前脑畸形有关。
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Genes Dev. 2007 Dec 15;21(24):3272-82. doi: 10.1101/gad.1623907.
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Nodal signaling: developmental roles and regulation.节点信号传导:发育中的作用与调控
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Holoprosencephaly: clinical, anatomic, and molecular dimensions.全前脑畸形:临床、解剖及分子层面
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Roles of organizer factors and BMP antagonism in mammalian forebrain establishment.组织者因子和骨形态发生蛋白拮抗作用在哺乳动物前脑形成中的作用。
Dev Biol. 2006 Aug 15;296(2):458-75. doi: 10.1016/j.ydbio.2006.06.014. Epub 2006 Jun 14.