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Search results 1 to 100 out of 127 for Mym

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0.057s
Type Details Score
Gene
Type: gene
Organism: mouse, laboratory
Publication    
First Author: Sam M
Year: 1998
Journal: GenBank Submission
Title: Mus musculus Mym mRNA, 5'UTR
Pages: AF019615
Publication        
First Author: Mouse Genome Informatics Scientific Curators
Year: 2002
Title: Function or Process or Component Unknown following Literature Review
Gene
Type: gene
Organism: mouse, laboratory
Author
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein
Organism: Mus musculus/domesticus
Length: 83  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 983  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 885  
Fragment?: false
Allele    
Name: zinc finger, MYM domain containing 1; wild type
Allele  
Name: zinc finger, MYM domain containing 1; gene trap XM150, BayGenomics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap XL140, BayGenomics
Allele Type: Gene trapped
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus caroli
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus pahari
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus spretus
Allele  
Name: zinc finger, MYM domain containing 1; gene trap PST11580, Mammalian Functional Genomics Centre
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap PST11832, Mammalian Functional Genomics Centre
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap P025H07, German Gene Trap Consortium
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap D055C05, German Gene Trap Consortium
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap M021E08, German Gene Trap Consortium
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap M023A03, German Gene Trap Consortium
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST54625, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST58873, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST114546, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST156846, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST156750, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST183004, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST194843, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST232364, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST309497, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST339012, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST377370, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap OST396580, Lexicon Genetics
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap EUCE00133e11, Helmholtz Zentrum Muenchen GmbH
Allele Type: Gene trapped
Allele
Name: zinc finger, MYM domain containing 1; targeted mutation 1a, Wellcome Trust Sanger Institute
Allele Type: Targeted
Attribute String: Conditional ready, Null/knockout, Reporter
Allele
Name: zinc finger, MYM domain containing 1; targeted mutation 1e, Wellcome Trust Sanger Institute
Allele Type: Targeted
Attribute String: Null/knockout, Reporter
Allele  
Name: zinc finger, MYM domain containing 1; gene trap S8-5H1, Philippe Soriano
Allele Type: Gene trapped
Allele
Name: zinc finger, MYM domain containing 1; endonuclease-mediated mutation 1, Cyagen Biosciences
Allele Type: Endonuclease-mediated
Attribute String: Null/knockout
Allele
Name: zinc finger, MYM domain containing 1; endonuclease-mediated mutation 2, Cyagen Biosciences
Allele Type: Endonuclease-mediated
Attribute String: Conditional ready, No functional change
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Publication
First Author: Coulombe P
Year: 2023
Journal: Nat Commun
Title: Meis1 establishes the pre-hemogenic endothelial state prior to Runx1 expression.
Volume: 14
Issue: 1
Pages: 4537
Allele  
Name: zinc finger, MYM domain containing 1; gene trap GC0430, Telethon Institute of Genetics and Medicine
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap IST13686H10, Texas A&M Institute for Genomic Medicine
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap IST14181H2, Texas A&M Institute for Genomic Medicine
Allele Type: Gene trapped
Allele  
Name: zinc finger, MYM domain containing 1; gene trap IST14632C9, Texas A&M Institute for Genomic Medicine
Allele Type: Gene trapped
Strain
Attribute String: coisogenic, endonuclease-mediated mutation, mutant strain
Strain
Attribute String: coisogenic, endonuclease-mediated mutation, mutant strain
Publication        
First Author: Mouse Genome Informatics Scientific Curators
Year: 2003
Title: Data Curation Using Mouse Genome Assembly
Publication      
First Author: MGI Genome Annotation Group and UniGene Staff
Year: 2015
Journal: Database Download
Title: MGI-UniGene Interconnection Effort
Publication
First Author: Vallis KA
Year: 2002
Journal: Radiat Res
Title: Identification of radiation-responsive genes in vitro using a gene trap strategy predicts for modulation of expression by radiation in vivo.
Volume: 157
Issue: 1
Pages: 8-18
Publication
First Author: Reiter A
Year: 1998
Journal: Blood
Title: Consistent fusion of ZNF198 to the fibroblast growth factor receptor-1 in the t(8;13)(p11;q12) myeloproliferative syndrome.
Volume: 92
Issue: 5
Pages: 1735-42
Publication
First Author: van der Maarel SM
Year: 1996
Journal: Hum Mol Genet
Title: Cloning and characterization of DXS6673E, a candidate gene for X-linked mental retardation in Xq13.1.
Volume: 5
Issue: 7
Pages: 887-97
Publication
First Author: Popovici C
Year: 1998
Journal: Proc Natl Acad Sci U S A
Title: Fibroblast growth factor receptor 1 is fused to FIM in stem-cell myeloproliferative disorder with t(8;13).
Volume: 95
Issue: 10
Pages: 5712-7
Publication
First Author: Still IH
Year: 1998
Journal: Blood
Title: The t(8;13) atypical myeloproliferative disorder: further analysis of the ZNF198 gene and lack of evidence for multiple genes disrupted on chromosome 13.
Volume: 92
Issue: 4
Pages: 1456-8
Protein Domain
Type: Domain
Description: Zinc finger (Znf) domains are relatively small protein motifs which contain multiple finger-like protrusions that make tandem contacts with their target molecule. Some of these domains bind zinc, but many do not; instead binding other metals such as iron, or no metal at all. For example, some family members form salt bridges to stabilise the finger-like folds. They were first identified as a DNA-binding motif in transcription factor TFIIIA from Xenopus laevis (African clawed frog), however they are now recognised to bind DNA, RNA, protein and/or lipid substrates [, , , , ]. Their binding properties depend on the amino acid sequence of the finger domains and of the linker between fingers, as well as on the higher-order structures and the number of fingers. Znf domains are often found in clusters, where fingers can have different binding specificities. There are many superfamilies of Znf motifs, varying in both sequence and structure. They display considerable versatility in binding modes, even between members of the same class (e.g. some bind DNA, others protein), suggesting that Znf motifs are stable scaffolds that have evolved specialised functions. For example, Znf-containing proteins function in gene transcription, translation, mRNA trafficking, cytoskeleton organisation, epithelial development, cell adhesion, protein folding, chromatin remodelling and zinc sensing, to name but a few []. Zinc-binding motifs are stable structures, and they rarely undergo conformational changes upon binding their target. MYM-type zinc fingers were identified in MYM family proteins []. Human protein is involved in a chromosomal translocation and may be responsible for X-linked retardation in XQ13.1 []. is also involved in disease. In myeloproliferative disorders it is fused to FGF receptor 1 []; in atypical myeloproliferative disorders it is rearranged []. Members of the family generally are involved in development. This Zn-finger domain functions as a transcriptional trans-activator of late vaccinia viral genes, and orthologues are also found in all nucleocytoplasmic large DNA viruses, NCLDV. This domain is also found fused to the C termini of recombinases from certain prokaryotic transposons [].
Publication      
First Author: Mouse Genome Database and National Center for Biotechnology Information
Year: 2000
Journal: Database Release
Title: Entrez Gene Load
Protein
Organism: Mus musculus/domesticus
Length: 1370  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 627  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1549  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1376  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 311  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1356  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 311  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1209  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 495  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1278  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1370  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 497  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1368  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 895  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 1249  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 776  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 1222  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 1157  
Fragment?: false
Protein
Organism: Mus musculus/domesticus
Length: 1249  
Fragment?: false
Publication
First Author: Cobellis G
Year: 2005
Journal: Nucleic Acids Res
Title: Tagging genes with cassette-exchange sites.
Volume: 33
Issue: 4
Pages: e44
Publication      
First Author: Wellcome Trust Sanger Institute
Year: 2010
Journal: MGI Direct Data Submission
Title: Alleles produced for the EUCOMM and EUCOMMTools projects by the Wellcome Trust Sanger Institute
Publication
First Author: Hansen J
Year: 2003
Journal: Proc Natl Acad Sci U S A
Title: A large-scale, gene-driven mutagenesis approach for the functional analysis of the mouse genome.
Volume: 100
Issue: 17
Pages: 9918-22
Publication
First Author: Stryke D
Year: 2003
Journal: Nucleic Acids Res
Title: BayGenomics: a resource of insertional mutations in mouse embryonic stem cells.
Volume: 31
Issue: 1
Pages: 278-81
Publication
First Author: Okazaki Y
Year: 2002
Journal: Nature
Title: Analysis of the mouse transcriptome based on functional annotation of 60,770 full-length cDNAs.
Volume: 420
Issue: 6915
Pages: 563-73
Publication
First Author: Kawai J
Year: 2001
Journal: Nature
Title: Functional annotation of a full-length mouse cDNA collection.
Volume: 409
Issue: 6821
Pages: 685-90
Publication        
First Author: Cyagen Biosciences Inc.
Year: 2022
Title: Cyagen Biosciences Website.
Publication
First Author: Skarnes WC
Year: 2011
Journal: Nature
Title: A conditional knockout resource for the genome-wide study of mouse gene function.
Volume: 474
Issue: 7351
Pages: 337-42
Publication
First Author: Hansen GM
Year: 2008
Journal: Genome Res
Title: Large-scale gene trapping in C57BL/6N mouse embryonic stem cells.
Volume: 18
Issue: 10
Pages: 1670-9