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体内合成 Hox 转录因子的功能和特异性。

Function and specificity of synthetic Hox transcription factors in vivo.

机构信息

Department of Cell Biology, Biozentrum, University of Basel, 4056 Basel, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 2010 Mar 2;107(9):4087-92. doi: 10.1073/pnas.0914595107. Epub 2010 Feb 10.

Abstract

Homeotic (Hox) genes encode transcription factors that confer segmental identity along the anteroposterior axis of the embryo. However the molecular mechanisms underlying Hox-mediated transcription and the differential requirements for specificity in the regulation of the vast number of Hox-target genes remain ill-defined. Here we show that synthetic Sex combs reduced (Scr) genes that encode the Scr C terminus containing the homedomain (HD) and YPWM motif (Scr-HD) are functional in vivo. Synthetic Scr-HD peptides can induce ectopic salivary glands in the embryo and homeotic transformations in the adult fly, act as transcriptional activators and repressors during development, and participate in protein-protein interactions. Their transformation capacity was found to be enhanced over their full-length counterpart and mutations known to transform the full-length protein into constitutively active or inactive variants behaved accordingly in the synthetic peptides. Our results show that synthetic Scr-HD genes are sufficient for homeotic function in Drosophila and suggest that the N terminus of Scr has a role in transcriptional potency, rather than specificity. We also demonstrate that synthetic peptides behave largely in a predictable way, by exhibiting Scr-specific phenotypes throughout development, which makes them an important tool for synthetic biology.

摘要

同源盒 (Hox) 基因编码转录因子,沿胚胎的前后轴赋予节段性身份。然而,Hox 介导的转录的分子机制以及对大量 Hox 靶基因的特异性调节的差异需求仍然定义不明确。在这里,我们表明编码包含同源域 (HD) 和 YPWM 基序的 Scr C 末端的合成 Sex combs reduced (Scr) 基因在体内具有功能。合成 Scr-HD 肽可以在胚胎中诱导异位唾液腺,并在成年果蝇中诱导同源转变,在发育过程中作为转录激活剂和抑制剂发挥作用,并参与蛋白质-蛋白质相互作用。发现它们的转化能力比全长对应物增强,并且已知将全长蛋白转化为组成型激活或失活变体的突变在合成肽中也表现出相应的行为。我们的结果表明,合成的 Scr-HD 基因足以在果蝇中发挥同源功能,并表明 Scr 的 N 端在转录效力中起作用,而不是特异性。我们还证明了合成肽在很大程度上表现出可预测的行为,在整个发育过程中表现出 Scr 特异性表型,这使它们成为合成生物学的重要工具。

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