Senejani Alireza G, Gogarten J Peter
Department of Molecular and Cell Biology, University of Connecticut, Storrs, CT 06269-3125, USA.
Int J Biol Sci. 2007 Feb 16;3(4):205-11. doi: 10.7150/ijbs.3.205.
Homing endonucleases are site-specific and rare cutting endonucleases often encoded by intron or intein containing genes. They lead to the rapid spread of the genetic element that hosts them by a process termed 'homing'; and ultimately the allele containing the element will be fixed in the population. PI-SceI, an endonuclease encoded as a protein insert or intein within the yeast V-ATPase catalytic subunit encoding gene (vma1), is among the best characterized homing endonucleases. The structures of the Sce VMA1 intein and of the intein bound to its target site are known. Extensive biochemical studies performed on the PI-SceI enzyme provide information useful to recognize critical amino acids involved in self-splicing and endonuclease functions of the protein. Here we describe an insertion of the Green Fluorescence Protein (GFP) into a loop which is located between the endonuclease and splicing domains of the Sce VMA1 intein. The GFP is functional and the additional GFP domain does not prevent intein excision and endonuclease activity. However, the endonuclease activity of the newly engineered protein was different from the wild-type protein in that it required the presence of Mn(2+) and not Mg(2+) metal cations for activity.
归巢内切酶是位点特异性且切割罕见的内切酶,通常由含内含子或内含肽的基因编码。它们通过一种称为“归巢”的过程导致携带它们的遗传元件迅速传播;最终,含有该元件的等位基因将在种群中固定下来。PI-SceI是一种内切酶,作为蛋白质插入序列或内含肽编码在酵母V-ATP酶催化亚基编码基因(vma1)内,是特征最明确的归巢内切酶之一。已知Sce VMA1内含肽及其与靶位点结合的内含肽的结构。对PI-SceI酶进行的广泛生化研究提供了有用信息,有助于识别参与该蛋白质自我剪接和内切酶功能的关键氨基酸。在此,我们描述了将绿色荧光蛋白(GFP)插入到Sce VMA1内含肽的内切酶结构域和剪接结构域之间的一个环中。GFP具有功能,并且额外的GFP结构域不会阻止内含肽切除和内切酶活性。然而,新工程化蛋白质的内切酶活性与野生型蛋白质不同,因为它的活性需要Mn(2+)而非Mg(2+)金属阳离子的存在。