TY - JOUR
T1 - Discovery of a novel restriction endonuclease by genome comparison and application of a wheat-germ-based cell-free translation assay
T2 - PabI (5prime;-GTA/C) from the hyperthermophilic archaeon Pyrococcus abyssi
AU - Ishikawa, Ken
AU - Watanabe, Miki
AU - Kuroita, Toshihiro
AU - Uchiyama, Ikuo
AU - Bujnicki, Janusz M.
AU - Kawakami, Bunsei
AU - Tanokura, Masaru
AU - Kobayashi, Ichizo
N1 - Funding Information:
We thank Dr Yoshizumi Ishino for providing the P.abyssi genomic DNA, Dr Keiko Kita and Dr Yoshizumi Ishino for advice in biochemical experiments, and Dr Naofumi Handa and Dr Marat R. Sadykov for comments on a version of the manuscript. We are also grateful to Dr Asao Ichige for suggestion about the restriction avoidance in H.pylori. This work was supported by Japanese national project PROTEIN 3000 and a grant-in-aid by MEXT (Genome Homeostasis, Kiban). The work of J.M.B. was supported by the Polish Ministry of Scientific Research and Information Technology and by the Young Investigator award from EMBO and HHMI. Funding to pay the Open Access publication charges for this article was provided by a grant from MEXT.
PY - 2005
Y1 - 2005
N2 - To search for restriction endonucleases, we used a novel plant-based cell-free translation procedure that bypasses the toxicity of these enzymes. To identify candidate genes, the related genomes of the hyperthermophilic archaea Pyrococcus abyssi and Pyrococcus horikoshii were compared. In line with the selfish mobile gene hypothesis for restriction-modification systems, apparent genome rearrangement around putative restriction genes served as a selecting criterion. Several candidate restriction genes were identified and then amplified in such a way that they were removed from their own translation signal. During their cloning into a plasmid, the genes became connected with a plant translation signal. After in vitro transcription by T7 RNA polymerase, the mRNAs were separated from the template DNA and translated in a wheat-germ-based cell-free protein synthesis system. The resulting solution could be directly assayed for restriction activity. We identified two deoxyribonucleases. The novel enzyme was denoted as PabI, purified and found to recognize 5′-GTAC and leave a 3′-TA overhang (5′-GTA/C), a novel restriction enzyme-generated terminus. PabI is active up to 90°C and optimally active at a pH of around 6 and in NaCl concentrations ranging from 100 to 200 mM. We predict that it has a novel 3D structure.
AB - To search for restriction endonucleases, we used a novel plant-based cell-free translation procedure that bypasses the toxicity of these enzymes. To identify candidate genes, the related genomes of the hyperthermophilic archaea Pyrococcus abyssi and Pyrococcus horikoshii were compared. In line with the selfish mobile gene hypothesis for restriction-modification systems, apparent genome rearrangement around putative restriction genes served as a selecting criterion. Several candidate restriction genes were identified and then amplified in such a way that they were removed from their own translation signal. During their cloning into a plasmid, the genes became connected with a plant translation signal. After in vitro transcription by T7 RNA polymerase, the mRNAs were separated from the template DNA and translated in a wheat-germ-based cell-free protein synthesis system. The resulting solution could be directly assayed for restriction activity. We identified two deoxyribonucleases. The novel enzyme was denoted as PabI, purified and found to recognize 5′-GTAC and leave a 3′-TA overhang (5′-GTA/C), a novel restriction enzyme-generated terminus. PabI is active up to 90°C and optimally active at a pH of around 6 and in NaCl concentrations ranging from 100 to 200 mM. We predict that it has a novel 3D structure.
UR - http://www.scopus.com/inward/record.url?scp=27144543021&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=27144543021&partnerID=8YFLogxK
U2 - 10.1093/nar/gni113
DO - 10.1093/nar/gni113
M3 - Article
C2 - 16040595
AN - SCOPUS:27144543021
SN - 0305-1048
VL - 33
SP - 1
EP - 10
JO - Nucleic Acids Research
JF - Nucleic Acids Research
IS - 13
ER -