首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Engineering BspQI nicking enzymes and application of N.BspQI in DNA labeling and production of single-strand DNA
Authors:Penghua Zhang  Priscilla Hiu-Mei Too  James C Samuelson  Siu-Hong Chan  Tamas Vincze  Stephanie Doucette  Stefan Bäckström  Konstantinos D Potamousis  Timothy M Schramm  Dan Forrest  David C Schwartz  Shuang-yong Xu
Institution:1. New England Biolabs, Inc., 240 County Road, Ipswich, MA 01938, USA;2. Göteborg University, Department of Medical Biochemistry and Cell Biology, Medicinaregatan 9A, Box 440, SE-40530 Göteborg, Sweden;3. Laboratory for Molecular and Computational Genomics, Department of Chemistry, Laboratory for Genetics, University of Wisconsin-Madison Biotechnology Center, University of Wisconsin-Madison, 425 Henry Mall, Madison, WI 53706, USA;1. College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao 266109, China;2. College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China
Abstract:BspQI is a thermostable Type IIS restriction endonuclease (REase) with the recognition sequence 5′GCTCTTC N1/N4 3′. Here we report the cloning and expression of the bspQIR gene for the BspQI restriction enzyme in Escherichia coli. Alanine scanning of the BspQI charged residues identified a number of DNA nicking variants. After sampling combinations of different amino acid substitutions, an Nt.BspQI triple mutant (E172A/E248A/E255K) was constructed with predominantly top-strand DNA nicking activity. Furthermore, a triple mutant of BspQI (Nb.BspQI, N235A/K331A/R428A) was engineered to create a bottom-strand nicking enzyme. In addition, we demonstrated the application of Nt.BspQI in optical mapping of single DNA molecules. Nt or Nb.BspQI-nicked dsDNA can be further digested by E. coli exonuclease III to create ssDNA for downstream applications. BspQI contains two potential catalytic sites: a top-strand catalytic site (Ct) with a D-H-N-K motif found in the HNH endonuclease family and a bottom-strand catalytic site (Cb) with three scattered Glu residues. BlastP analysis of proteins in GenBank indicated a putative restriction enzyme with significant amino acid sequence identity to BspQI from the sequenced bacterial genome Croceibacter atlanticus HTCC2559. This restriction gene was amplified by PCR and cloned into a T7 expression vector. Restriction mapping and run-off DNA sequencing of digested products from the partially purified enzyme indicated that it is an EarI isoschizomer with 6-bp recognition, which we named CatHI (CTCTTC N1/N4).
Keywords:
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号