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1.
Mol Cell Biol ; 13(12): 7531-9, 1993 Dec.
Article in English | MEDLINE | ID: mdl-8246971

ABSTRACT

Endonucleases encoded by mobile group I introns are highly specific DNases that induce a double-strand break near the site to which the intron moves. I-PpoI from the acellular slime mold Physarum polycephalum mediates the mobility of intron 3 (Pp LSU 3) in the extrachromosomal nuclear ribosomal DNA of this organism. We showed previously that cleavage by I-PpoI creates a four-base staggered cut near the point of intron insertion. We have now characterized several further properties of the endonuclease. As determined by deletion analysis, the minimal target site recognized by I-PopI was a sequence of 13 to 15 bp spanning the cleavage site. The purified protein behaved as a globular dimer in sedimentation and gel filtration. In gel mobility shift assays in the presence of EDTA, I-PpoI formed a stable and specific complex with DNA, dissociating with a half-life of 45 min. By footprinting and interference assays with methidiumpropyl-EDTA-iron(II), I-PpoI contacted a 22- to 24-bp stretch of DNA. The endonuclease protected most of the purines found in both the major and minor grooves of the DNA helix from modification by dimethyl sulfate (DMS). However, the reactivity to DMS was enhanced at some purines, suggesting that binding leads to a conformational change in the DNA. The pattern of DMS protection differed fundamentally in the two partially symmetrical halves of the recognition sequence.


Subject(s)
Endodeoxyribonucleases/genetics , Endodeoxyribonucleases/metabolism , Physarum/genetics , Physarum/metabolism , Amino Acid Sequence , Animals , Base Sequence , Binding Sites/genetics , Conserved Sequence , DNA Fingerprinting , DNA, Fungal/genetics , DNA, Fungal/metabolism , DNA, Protozoan/genetics , DNA, Protozoan/metabolism , DNA, Ribosomal/genetics , DNA, Ribosomal/metabolism , Introns , Molecular Sequence Data , Protein Conformation
2.
Mol Cell Biol ; 10(7): 3386-96, 1990 Jul.
Article in English | MEDLINE | ID: mdl-2355911

ABSTRACT

A novel and only recently recognized class of enzymes is composed of the site-specific endonucleases encoded by some group I introns. We have characterized several aspects of I-Ppo, the endonuclease that mediates the mobility of intron 3 in the ribosomal DNA of Physarum polycephalum. This intron is unique among mobile group I introns in that it is located in nuclear DNA. We found that I-Ppo is encoded by an open reading frame in the 5' half of intron 3, upstream of the sequences required for self-splicing of group I introns. Either of two AUG initiation codons could start this reading frame, one near the beginning of the intron and the other in the upstream exon, leading to predicted polypeptides of 138 and 160 amino acid residues. The longer polypeptide was the major form translated in vitro in a reticulocyte extract. From nuclease assays of proteins synthesized in vitro with partially deleted DNAs, we conclude that both polypeptides possess endonuclease activity. We also have expressed I-Ppo in Escherichia coli, using a bacteriophage T7 RNA polymerase expression system. The longer polypeptide also was the predominant form made in this system. It showed enzymatic activity in bacteria in vivo, as demonstrated by the cleavage of a plasmid carrying the target site. Like several other intron-encoded endonucleases, I-Ppo makes a four-base staggered cut in its ribosomal DNA target sequence, very near the site where intron 3 becomes integrated in crosses of intron 3-containing and intron 3-lacking Physarum strains.


Subject(s)
DNA, Ribosomal/genetics , Endodeoxyribonucleases/genetics , Introns , Physarum/genetics , Amino Acid Sequence , Base Sequence , Chromosome Deletion , Cloning, Molecular , Gene Expression , Molecular Sequence Data , Physarum/enzymology , Plasmids , Protein Biosynthesis , Restriction Mapping , Transcription, Genetic
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