Manning Gerard, Young Susan L, Miller W Todd, Zhai Yufeng
Razavi Newman Center for Bioinformatics, Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2008 Jul 15;105(28):9674-9. doi: 10.1073/pnas.0801314105. Epub 2008 Jul 10.
Tyrosine kinase signaling has long been considered a hallmark of intercellular communication, unique to multicellular animals. Our genomic analysis of the unicellular choanoflagellate Monosiga brevicollis discovers a remarkable count of 128 tyrosine kinases, 38 tyrosine phosphatases, and 123 phosphotyrosine (pTyr)-binding SH2 proteins, all higher counts than seen in any metazoan. This elaborate signaling network shows little orthology to metazoan counterparts yet displays many innovations reminiscent of metazoans. These include extracellular domains structurally related to those of metazoan receptor kinases, alternative methods for membrane anchoring and phosphotyrosine interaction in cytoplasmic kinases, and domain combinations that link kinases to small GTPase signaling and transcription. These proteins also display a wealth of combinations of known signaling domains. This uniquely divergent and elaborate signaling network illuminates the early evolution of pTyr signaling, explores innovative ways to traverse the cellular signaling circuitry, and shows extensive convergent evolution, highlighting pervasive constraints on pTyr signaling.
酪氨酸激酶信号传导长期以来一直被认为是多细胞动物特有的细胞间通讯标志。我们对单细胞领鞭毛虫短柄单歧藻的基因组分析发现,其酪氨酸激酶数量多达128个,酪氨酸磷酸酶有38个,磷酸酪氨酸(pTyr)结合SH2蛋白有123个,这些数量均高于任何后生动物。这个复杂的信号网络与后生动物的对应网络几乎没有直系同源关系,但却展现出许多类似于后生动物的创新之处。这些创新包括与后生动物受体激酶结构相关的细胞外结构域、细胞质激酶中膜锚定和磷酸酪氨酸相互作用的替代方法,以及将激酶与小GTPase信号传导和转录联系起来的结构域组合。这些蛋白质还展示了大量已知信号结构域的组合。这个独特的分化且复杂的信号网络阐明了pTyr信号传导的早期进化,探索了穿越细胞信号通路的创新方式,并显示出广泛的趋同进化,突出了对pTyr信号传导的普遍限制。