Catmull J, Hayward D C, McIntyre N E, Reece-Hoyes J S, Mastro R, Callaerts P, Ball E E, Miller D J
Department of Biochemistry and Molecular Biology, James Cook University, Townsville, Queensland 4811, Australia.
Dev Genes Evol. 1998 Aug;208(6):352-6. doi: 10.1007/s004270050191.
Vertebrate Pax-6 and its Drosophila homolog eyeless play central roles in eye specification, although it is not clear if this represents the ancestral role of this gene class. As the most "primitive" animals with true nervous systems, the Cnidaria may be informative in terms of the evolution of the Pax gene family. For this reason we surveyed the Pax gene complement of a representative of the basal cnidarian class (the Anthozoa), the coral Acropora millepora. cDNAs encoding two coral Pax proteins were isolated. Pax-Aam encoded a protein containing only a paired domain, whereas Pax-Cam also contained a homeodomain clearly related to those in the Pax-6 family. The paired domains in both proteins most resembled the vertebrate Pax-2/5/8 class, but shared several distinctive substitutions. As in most Pax-6 homologs and orthologs, an intron was present in the Pax-Cam locus at a position corresponding to residues 46/47 in the homeodomain. We propose a model for evolution of the Pax family, in which the ancestor of all of the vertebrate Pax genes most resembled Pax-6, and arose via fusion of a Pax-Aam-like gene (encoding only a paired domain) with an anteriorly-expressed homeobox gene resembling the paired-like class.
脊椎动物的Pax-6及其果蝇同源基因眼无珠在眼睛特化过程中发挥着核心作用,尽管目前尚不清楚这是否代表了该基因家族的原始作用。作为拥有真正神经系统的最“原始”动物,刺胞动物门可能对Pax基因家族的进化具有参考价值。因此,我们研究了基部刺胞动物门(珊瑚纲)的代表物种——珊瑚多孔鹿角珊瑚的Pax基因组成。分离出了编码两种珊瑚Pax蛋白的cDNA。Pax-Aam编码的蛋白仅含有一个配对结构域,而Pax-Cam还含有一个与Pax-6家族中的同源异型结构域明显相关的同源异型结构域。两种蛋白中的配对结构域与脊椎动物的Pax-2/5/8类最为相似,但有几个独特的替换。与大多数Pax-6同源基因和直系同源基因一样,Pax-Cam基因座中的一个内含子位于与同源异型结构域中第46/47位残基相对应的位置。我们提出了一个Pax家族的进化模型,其中所有脊椎动物Pax基因的祖先最类似于Pax-6,并且是通过一个仅编码配对结构域的类似Pax-Aam的基因与一个类似于配对样类的在前部表达的同源框基因融合而产生的。