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文昌鱼engrailed基因的顺式调控:对肌肉特异性增强子进化的见解。

Cis-regulation of the amphioxus engrailed gene: insights into evolution of a muscle-specific enhancer.

作者信息

Beaster-Jones Laura, Schubert Michael, Holland Linda Z

机构信息

Marine Biology Research Division, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA 92093-0202, USA.

出版信息

Mech Dev. 2007 Aug;124(7-8):532-42. doi: 10.1016/j.mod.2007.06.002. Epub 2007 Jun 12.

DOI:10.1016/j.mod.2007.06.002
PMID:17624741
Abstract

To gain insights into the relation between evolution of cis-regulatory DNA and evolution of gene function, we identified tissue-specific enhancers of the engrailed gene of the basal chordate amphioxus (Branchiostoma floridae) and compared their ability to direct expression in both amphioxus and its nearest chordate relative, the tunicate Ciona intestinalis. In amphioxus embryos, the native engrailed gene is expressed in three domains - the eight most anterior somites, a few cells in the central nervous system (CNS) and a few ectodermal cells. In contrast, in C. intestinalis, in which muscle development is highly divergent, engrailed expression is limited to the CNS. To characterize the tissue-specific enhancers of amphioxus engrailed, we first showed that 7.8kb of upstream DNA of amphioxus engrailed directs expression to all three domains in amphioxus that express the native gene. We then identified the amphioxus engrailed muscle-specific enhancer as the 1.2kb region of upstream DNA with the highest sequence identity to the mouse en-2 jaw muscle enhancer. This amphioxus enhancer directed expression to both the somites in amphioxus and to the larval muscles in C. intestinalis. These results show that even though expression of the native engrailed has apparently been lost in developing C. intestinalis muscles, they express the transcription factors necessary to activate transcription from the amphioxus engrailed enhancer, suggesting that gene networks may not be completely disrupted if an individual component is lost.

摘要

为深入了解顺式调控DNA的进化与基因功能进化之间的关系,我们鉴定了基部脊索动物文昌鱼(佛罗里达文昌鱼) engrailed基因的组织特异性增强子,并比较了它们在文昌鱼及其最近的脊索动物亲属海鞘(肠鳃纲玻璃海鞘)中指导表达的能力。在文昌鱼胚胎中,天然的engrailed基因在三个区域表达——最前面的八个体节、中枢神经系统(CNS)中的一些细胞和一些外胚层细胞。相比之下,在肌肉发育高度不同的海鞘中,engrailed的表达仅限于中枢神经系统。为了表征文昌鱼engrailed的组织特异性增强子,我们首先表明文昌鱼engrailed上游7.8kb的DNA将表达导向文昌鱼中表达天然基因的所有三个区域。然后,我们将文昌鱼engrailed肌肉特异性增强子鉴定为上游DNA中与小鼠en-2颌肌增强子具有最高序列同一性的1.2kb区域。这个文昌鱼增强子将表达导向文昌鱼的体节和海鞘幼虫的肌肉。这些结果表明,尽管在发育中的海鞘肌肉中天然engrailed的表达显然已经丧失,但它们表达激活文昌鱼engrailed增强子转录所需

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