Biswas Kabir Hassan, Shenoy Avinash R, Dutta Anindya, Visweswariah Sandhya S
Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore, 560012, India.
J Mol Evol. 2009 Jun;68(6):587-602. doi: 10.1007/s00239-009-9242-5. Epub 2009 Jun 3.
Guanylyl cyclases (GCs) are enzymes that generate cyclic GMP and regulate different physiologic and developmental processes in a number of organisms. GCs possess sequence similarity to class III adenylyl cyclases (ACs) and are present as either membrane-bound receptor GCs or cytosolic soluble GCs. We sought to determine the evolution of GCs using a large-scale bioinformatic analysis and found multiple lineage-specific expansions of GC genes in the genomes of many eukaryotes. Moreover, a few GC-like proteins were identified in prokaryotes, which come fused to a number of different domains, suggesting allosteric regulation of nucleotide cyclase activity. Eukaryotic receptor GCs are associated with a kinase homology domain (KHD), and phylogenetic analysis of these proteins suggest coevolution of the KHD and the associated cyclase domain as well as a conservation of the sequence and the size of the linker region between the KHD and the associated cyclase domain. Finally, we also report the existence of mimiviral proteins that contain putative active kinase domains associated with a cyclase domain, which could suggest early evolution of the fusion of these two important domains involved in signal transduction.
鸟苷酸环化酶(GCs)是一类能生成环鸟苷酸并在多种生物体中调节不同生理和发育过程的酶。GCs与III类腺苷酸环化酶(ACs)具有序列相似性,以膜结合受体GCs或胞质可溶性GCs的形式存在。我们试图通过大规模生物信息学分析来确定GCs的进化,结果发现在许多真核生物的基因组中,GC基因存在多个谱系特异性扩增。此外,在原核生物中鉴定出了一些类GC蛋白,它们与许多不同的结构域融合,这表明核苷酸环化酶活性存在变构调节。真核生物受体GCs与一个激酶同源结构域(KHD)相关联,对这些蛋白质的系统发育分析表明,KHD与相关环化酶结构域共同进化,并且KHD与相关环化酶结构域之间连接区的序列和大小保守。最后,我们还报道了存在包含与环化酶结构域相关的推定活性激酶结构域的拟病毒蛋白,这可能暗示了参与信号转导的这两个重要结构域融合的早期进化。