Friedhoff P, Lurz R, Lüder G, Pingoud A
Institut für Biochemie, Justus-Liebig-Universität Giessen, D-35392 Giessen, Germany.
J Biol Chem. 2001 Jun 29;276(26):23581-8. doi: 10.1074/jbc.M101694200. Epub 2001 Apr 20.
Here, we report that Sau3AI, an unusually large type II restriction enzyme with sequence homology to the mismatch repair protein MutH, is a monomeric enzyme as shown by gel filtration and ultracentrifugation. Structural similarities in the N- and C-terminal halves of the protein suggest that Sau3AI is a pseudo-dimer, i.e. a polypeptide with two similar domains. Since Sau3AI displays a nonlinear dependence of cleavage activity on enzyme concentration and a strong preference for substrates with two recognition sites over those with only one, it is likely that the functionally active form of Sau3AI is a dimer of a pseudo-dimer. Indeed, electron microscopy studies demonstrate that two distant recognition sites are brought together through DNA looping induced by the simultaneous binding of two Sau3AI molecules to the DNA. We suggest that the dimeric form of Sau3AI supplies two DNA-binding sites, one that is associated with the catalytic center and one that serves as an effector site.
在此,我们报道,Sau3AI是一种与错配修复蛋白MutH具有序列同源性的异常大型II型限制酶,凝胶过滤和超速离心结果表明它是一种单体酶。该蛋白N端和C端的结构相似性表明Sau3AI是一种假二聚体,即具有两个相似结构域的多肽。由于Sau3AI的切割活性对酶浓度呈非线性依赖,且与具有两个识别位点的底物相比,它对只有一个识别位点的底物有强烈偏好,因此Sau3AI的功能活性形式可能是假二聚体的二聚体。事实上,电子显微镜研究表明,通过两个Sau3AI分子同时与DNA结合诱导的DNA环化,两个远距离的识别位点被聚集在一起。我们认为,Sau3AI的二聚体形式提供了两个DNA结合位点,一个与催化中心相关,另一个作为效应位点。