首页> 外文期刊>BMC Genomics >Evolution of hedgehog and hedgehog-related genes, their origin from Hog proteins in ancestral eukaryotes and discovery of a novel Hint motif
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Evolution of hedgehog and hedgehog-related genes, their origin from Hog proteins in ancestral eukaryotes and discovery of a novel Hint motif

机译:刺猬和刺猬相关基因的进化,它们起源于祖传真核生物中的Hog蛋白,并发现了新的隐性基序

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Background The Hedgehog (Hh) signaling pathway plays important roles in human and animal development as well as in carcinogenesis. Hh molecules have been found in both protostomes and deuterostomes, but curiously the nematode Caenorhabditis elegans lacks a bona-fide Hh. Instead a series of Hh-related proteins are found, which share the Hint/Hog domain with Hh, but have distinct N-termini. Results We performed extensive genome searches of the cnidarian Nematostella vectensis and several nematodes to gain further insights into Hh evolution. We found six genes in N. vectensis with a relationship to Hh: two Hh genes, one gene with a Hh N-terminal domain fused to a Willebrand factor type A domain (VWA), and three genes containing Hint/Hog domains with distinct novel N-termini. In the nematode Brugia malayi we find the same types of hh-related genes as in C. elegans. In the more distantly related Enoplea nematodes Xiphinema and Trichinella spiralis we find a bona-fide Hh. In addition, T. spiralis also has a quahog gene like C. elegans, and there are several additional hh-related genes, some of which have secreted N-terminal domains of only 15 to 25 residues. Examination of other Hh pathway components revealed that T. spiralis - like C. elegans - lacks some of these components. Extending our search to all eukaryotes, we recovered genes containing a Hog domain similar to Hh from many different groups of protists. In addition, we identified a novel Hint gene family present in many eukaryote groups that encodes a VWA domain fused to a distinct Hint domain we call Vint. Further members of a poorly characterized Hint family were also retrieved from bacteria. Conclusion In Cnidaria and nematodes the evolution of hh genes occurred in parallel to the evolution of other genes that contain a Hog domain but have different N-termini. The fact that Hog genes comprising a secreted N-terminus and a Hog domain are also found in many protists suggests that this gene family must have arisen in very early eukaryotic evolution, and eventually gave rise to hh and hh-related genes in animals. The results indicate a hitherto unsuspected ability of Hog domain encoding genes to evolve new N-termini. In one instance in Cnidaria, the Hh N-terminal signaling domain is associated with a VWA domain and lacks a Hog domain, suggesting a modular mode of evolution also for the N-terminal domain. The Hog domain proteins, the inteins and VWA-Vint proteins represent three different families of Hint domain proteins that evolved in parallel in eukaryotes.
机译:背景技术刺猬(Hh)信号通路在人类和动物的发育以及致癌作用中起着重要作用。 Hh分子在原虫和氘核口中均已发现,但是奇怪的是线虫秀丽隐杆线虫缺乏真正的Hh。相反,发现了一系列与Hh相关的蛋白,它们与Hh共享Hint / Hog结构域,但具有不同的N末端。结果我们对cnidarian vectensis线虫和几个线虫进行了广泛的基因组搜索,以进一步了解Hh进化。我们在N. vectensis中发现了六个与Hh相关的基因:两个Hh基因,一个具有Hh N末端域与Willebrand因子A型域(VWA)融合的基因,以及三个包含Hint / Hog域的独特基因N总站。在马来西亚线虫中,我们发现与秀丽隐杆线虫中的hh相关基因类型相同。在距离更远的Enoplea线虫Xiphinema和Trichinella spiralis中,我们发现了真正的Hh。此外,螺旋螺旋杆菌还具有线虫基因,如秀丽隐杆线虫(C. elegans),还有一些其他的hh相关基因,其中一些仅分泌15至25个残基的N末端结构域。对其他Hh途径成分的检查表明,螺旋线虫(如秀丽隐杆线虫)缺少其中一些成分。将我们的搜索扩展到所有真核生物,我们从许多不同的原生生物群体中回收了包含类似于Hh的Hog域的基因。另外,我们鉴定出存在于许多真核生物组中的新颖的Hint基因家族,该家族编码融合至不同的Hint结构域的VWA结构域,我们将其称为Vint。还从细菌中检索了特征较差的Hint家族的其他成员。结论在猪鞭草和线虫中,hh基因的进化与包含Hog域但具有不同N末端的其他基因的进化同时发生。在许多原生生物中还发现了由分泌的N端和Hog结构域组成的Hog基因的事实表明,该基因家族一定是在非常早的真核生物进化中出现的,并最终在动物体内产生了hh和hh相关基因。结果表明,迄今为止,Hog结构域编码基因进化出新的N末端的能力是前所未有的。在猪唇草属植物的一个实例中,Hh N-末端信号结构域与VWA结构域相关并且缺乏Hog结构域,这暗示了N-末端结构域的模块化进化模式。 Hog域蛋白,内含肽和VWA-Vint蛋白代表了在真核生物中平行进化的Hint域蛋白的三个不同家族。

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