NA10482
DNA from Somatic cell hybrid
Description:
CHROMOSOME 11 REGIONAL MAPPING PANEL SOMATIC CELL HYBRIDS
Repository
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NIGMS Human Genetic Cell Repository
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Subcollection |
Hybrids |
Quantity |
0.050mg |
Quantitation Method |
Please see our FAQ |
Cell Type
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Somatic cell hybrid
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Transformant
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Untransformed
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Sample Source
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DNA from Somatic cell hybrid
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Confirmation
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Clinical summary/Case history
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ISCN
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Mouse/human hybrid retaining human der(11)t(X;11) & #7
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Remarks
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IDENTIFICATION OF SPECIES OF ORIGIN |
Species of Origin Confirmed by Nucleoside Phosphorylase, Glucose-6-Phosphate Dehydrogenase, and Lactate Dehydrogenase Isoenzyme Electrophoresis and by Chromosome Analysis |
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GENE MAPPING & DOSAGE STUDIES - X CHROMOSOME |
DNA from this somatic cell hybrid gave a negative result in Southern blot hybridization analysis with a probe for Xp22.32 (also Yp11.3), MIC2, and a positive result with a probe for Xq28, DXS15. PCR analysis of DNA from this somatic cell hybrid gave a positive result with a primer for Xq28, G6PD, and gave negative results with primers for Xp11.3, DXS1003, Xp22.32, STS, Xq12, DXS453, Xq13.3, PGK1, Xq21.3, DXS3, and Xq26, HPRT. |
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GENE MAPPING & DOSAGE STUDIES - CHROMOSOME 4 |
DNA from this somatic cell hybrid gave a negative result in Southern blot hybridization analysis with a probe for 4p16.2p15.1, D4S20. |
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GENE MAPPING & DOSAGE STUDIES - CHROMOSOME 7 |
DNA from this somatic cell hybrid gave a positive result in Southern blot hybridization analysis with a probe for 7q31q32, D7S347. |
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GENE MAPPING & DOSAGE STUDIES - CHROMOSOME 11 |
DNA from this somatic cell hybrid gave positive results in Southern blot hybridization analyses with probes for 11p15.5, D11S12, and 11q21q22, CLG, and a negative result with a probe for 11q23.3, ETS1. PCR analysis of DNA from this somatic cell hybrid gave positive results with primers for 11p13, CAT, and 11q21-q22, CLG. |
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Remarks |
Line MCH110.1 C4; produced by fusing human fibroblast (GM03552) with a 46,X,t(X;11) (Xpter>Xq26::11q23>11qter;11pter>11q23:: Xq26>Xqter) karyo with mouse line A9 cells; selected in HAT medium: 92% cells have human der(11)t(X;11) and 80% have #7 |
Gabriel JM, Higgins MJ, Gebuhr TC, Shows TB, Saitoh S, Nicholls RD, A model system to study genomic imprinting of human genes. Proc Natl Acad Sci U S A95:14857-62 1998 |
PubMed ID: 9843980 |
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Pilia G, MacMillan S, Nagaraja R, Mumm S, Weissenbach J, Schlessinger D, YAC/STS map of 9 Mb of Xq26 at 100-kb resolution, localizing 6 ESTs, 6 genes, and 32 genetic markers. Genomics34:55-62 1996 |
PubMed ID: 8661023 |
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Leek J, Lench N, Maraj B, Bailey A, Carr IM, Andersen S, Cross J, Whelan P, MacLennan KA, Meredith DM, Prostate-specific membrane antigen: evidence for the existence of a second related human gene British journal of cancer72:583-8 1995 |
PubMed ID: 7669565 |
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De Plaen E, Arden K, Traversari C, Gaforio JJ, Szikora JP, De Smet C, Brasseur F, van der Bruggen P, Lethé B, Lurquin C, Structure, chromosomal localization, and expression of 12 genes of the MAGE family Immunogenetics40:360-9 1994 |
PubMed ID: 7927540 |
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Oaks MK, Hanson JP Jr, O'Malley DP, Molecular cytogenetic mapping of the human melanoma antigen (MAGE) gene family to chromosome region Xq27-qter: implications for MAGE immunotherapy. Cancer Res54:1627-9 1994 |
PubMed ID: 8137270 |
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Dorig RE, Marcil A, Chopra A, Richardson CD, The human CD46 molecule is a receptor for measles virus (Edmonston strain). Cell75:295-305 1993 |
PubMed ID: 8402913 |
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Saxon PJ, Srivatsan ES, Stanbridge EJ, Introduction of human chromosome 11 via microcell transfer controls tumorigenic expression of HeLa cells. EMBO J5:3461-6 1986 |
PubMed ID: 2881780 |
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