Manning Charlene M, Mathews Wendy R, Fico Leah P, Thackeray Justin R
Biology Department, Clark University, Worcester, Massachusetts 01610, USA.
Genetics. 2003 Jun;164(2):433-42. doi: 10.1093/genetics/164.2.433.
Many proteins with novel functions were created by exon shuffling around the time of the metazoan radiation. Phospholipase C-gamma (PLC-gamma) is typical of proteins that appeared at this time, containing several different modules that probably originated elsewhere. To gain insight into both PLC-gamma evolution and structure-function relationships within the Drosophila PLC-gamma encoded by small wing (sl), we cloned and sequenced the PLC-gamma homologs from Drosophila pseudoobscura and D. virilis and compared their gene structure and predicted amino acid sequences with PLC-gamma homologs in other animals. PLC-gamma has been well conserved throughout, although structural differences suggest that the role of tyrosine phosphorylation in enzyme activation differs between vertebrates and invertebrates. Comparison of intron positions demonstrates that extensive intron loss has occurred during invertebrate evolution and also reveals the presence of conserved introns in both the N- and C-terminal PLC-gamma SH2 domains that are present in SH2 domains in many other genes. These and other conserved SH2 introns suggest that the SH2 domains in PLC-gamma are derived from an ancestral domain that was shuffled not only into PLC-gamma, but also into many other unrelated genes during animal evolution.
在后生动物辐射时期前后,许多具有新功能的蛋白质是通过外显子重排产生的。磷脂酶C-γ(PLC-γ)是在这个时期出现的典型蛋白质,它包含几个可能起源于其他地方的不同模块。为了深入了解果蝇小翅基因(sl)编码的果蝇PLC-γ的进化以及结构-功能关系,我们克隆并测序了拟暗果蝇和粗壮果蝇的PLC-γ同源物,并将它们的基因结构和预测的氨基酸序列与其他动物中的PLC-γ同源物进行了比较。尽管结构差异表明酪氨酸磷酸化在酶激活中的作用在脊椎动物和无脊椎动物之间有所不同,但PLC-γ在整个过程中一直得到很好的保守。内含子位置的比较表明,在无脊椎动物进化过程中发生了广泛的内含子丢失,同时也揭示了在许多其他基因的SH2结构域中存在的N端和C端PLC-γ SH2结构域中保守内含子的存在。这些以及其他保守的SH2内含子表明,PLC-γ中的SH2结构域源自一个祖先结构域,该结构域在动物进化过程中不仅被重排到PLC-γ中,还被重排到许多其他不相关的基因中。