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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >BMP Signaling Determines Body Size via Transcriptional Regulation of Collagen Genes in Caenorhabditis elegans
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BMP Signaling Determines Body Size via Transcriptional Regulation of Collagen Genes in Caenorhabditis elegans

机译:BMP信号传导通过Caenorhabditis elegans的胶原蛋白基因的转录调节来确定体尺寸

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摘要

Body size is a tightly regulated phenotype in metazoans that depends on both intrinsic and extrinsic factors. While signaling pathways are known to control organ and body size, the downstream effectors that mediate their effects remain poorly understood. In the nematode Caenorhabditis elegans, a Bone Morphogenetic Protein (BMP)-related signaling pathway is the major regulator of growth and body size. We investigated the transcriptional network through which the BMP pathway regulates body size and identified cuticle collagen genes as major effectors of growth control. We demonstrate that cuticle collagens can act as positive regulators (col-41), negative regulators (col-141), or dose-sensitive regulators (rol-6) of body size. Moreover, we find a requirement of BMP signaling for stage-specific expression of cuticle collagen genes. We show that the Smad signal transducers directly bind conserved Smad-binding elements in regulatory regions of col-141 and col-142, but not of col-41. Hence, cuticle collagen genes may be directly and indirectly regulated via the BMP pathway. Our work thus connects a conserved signaling pathway with its critical downstream effectors, advancing insight into how body size is specified. Since collagen mutations and misregulation are implicated in numerous human genetic disorders and injury sequelae, understanding how collagen gene expression is regulated has broad implications.
机译:体型是美唑诺亚的紧密调节表型,这取决于内在和外在因素。虽然已知信号通路控制器官和体尺寸,但介导其效果的下游效应仍然明白。在Nematode Caenorhabditis elegans中,骨骼形态发生蛋白(BMP) - 相关的信号通路是生长和体型的主要调节因子。我们研究了BMP途径通过该转录网络调节体尺寸,并将皮下胶原基因鉴定为生长控制的主要效果。我们证明了角质层胶原蛋白可以充当阳性调节剂(COL-41),负调节剂(COL-141)或体敏调节剂(ROL-6)。此外,我们发现了对Cuclics胶原基因的阶段特异性表达的BMP信号。我们表明SMAD信号换能器直接在COL-141和COL-142的调节区域中直接绑定保守的SMAD结合元件,但不是COL-41。因此,Cuclics胶原基因可以通过BMP途径直接和间接调节。因此,我们的工作通过其临界下游效应器连接了保守的信号通路,推动了对身体大小的洞察力。由于胶原蛋白突变和误导性涉及许多人类遗传疾病和损伤后遗症,了解胶原基因表达的调节方式有广泛的影响。

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