scholarly article | Q13442814 |
P356 | DOI | 10.1016/S0968-0004(00)01623-6 |
P698 | PubMed publication ID | 10973051 |
P50 | author | Harmit Singh Malik | Q30513673 |
P2093 | author name string | S Henikoff | |
P2860 | cites work | Human Mismatch Repair Genes and Their Association with Hereditary Non-Polyposis Colon Cancer | Q40431206 |
Genetic control of microsatellite stability | Q41355776 | ||
MLH1, PMS1, and MSH2 interactions during the initiation of DNA mismatch repair in yeast | Q42427955 | ||
Replication errors: cha(lle)nging the genome | Q42660015 | ||
Amino acid sequence motif of group I intron endonucleases is conserved in open reading frames of group II introns | Q42687817 | ||
Mitochondrial DNA of the coral Sarcophyton glaucum contains a gene for a homologue of bacterial MutS: a possible case of gene transfer from the nucleus to the mitochondrion | Q48038727 | ||
A coral mitochondrial mutS gene | Q48073739 | ||
Mutation of a meiosis-specific MutS homolog decreases crossing over but not mismatch correction | Q48076989 | ||
Somatic frameshift mutations in the MBD4 gene of sporadic colon cancers with mismatch repair deficiency. | Q53414620 | ||
Smr: a bacterial and eukaryotic homologue of the C-terminal region of the MutS2 family | Q78078966 | ||
MED1, a novel human methyl-CpG-binding endonuclease, interacts with DNA mismatch repair protein MLH1 | Q22009114 | ||
Gapped BLAST and PSI-BLAST: a new generation of protein database search programs | Q24545170 | ||
A phylogenomic study of the MutS family of proteins | Q24548238 | ||
Conserved domains in DNA repair proteins and evolution of repair systems | Q24548678 | ||
Sequence logos: a new way to display consensus sequences | Q24598387 | ||
The crystal structure of the DNase domain of colicin E7 in complex with its inhibitor Im7 protein | Q27618615 | ||
Conserved properties between functionally distinct MutS homologs in yeast | Q27931606 | ||
Functional specificity of MutL homologs in yeast: evidence for three Mlh1-based heterocomplexes with distinct roles during meiosis in recombination and mismatch correction | Q27939611 | ||
Requirement for PCNA in DNA mismatch repair at a step preceding DNA resynthesis | Q27939891 | ||
Gastrogenomic delights: a movable feast | Q28251684 | ||
Phylogenomics: improving functional predictions for uncharacterized genes by evolutionary analysis | Q28266110 | ||
Redundancy of Saccharomyces cerevisiae MSH3 and MSH6 in MSH2-dependent mismatch repair | Q29615027 | ||
A combined algorithm for genome-wide prediction of protein function | Q29615998 | ||
A phylogenomic study of DNA repair genes, proteins, and processes | Q33884321 | ||
Structural basis for MutH activation in E.coli mismatch repair and relationship of MutH to restriction endonucleases | Q33888460 | ||
Identification of the endonuclease domain encoded by R2 and other site-specific, non-long terminal repeat retrotransposable elements | Q36407664 | ||
Self-splicing group I and group II introns encode homologous (putative) DNA endonucleases of a new family | Q36722758 | ||
Embedding strategies for effective use of information from multiple sequence alignments | Q38558981 | ||
P433 | issue | 9 | |
P921 | main subject | DNA mismatch repair | Q2984243 |
P1104 | number of pages | 5 | |
P304 | page(s) | 414-418 | |
P577 | publication date | 2000-09-01 | |
P1433 | published in | Trends in Biochemical Sciences | Q1565711 |
P1476 | title | Dual recognition-incision enzymes might be involved in mismatch repair and meiosis | |
P478 | volume | 25 |
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