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RAT ANTI MOUSE CD200R

ArtNr 20-783-315050
Hersteller GENWAY
Menge 0.02 mg
Kategorie
Typ Antibody
Specific against Mouse (Murine, Mus musculus)
Host Rat
ECLASS 10.1 32160702
ECLASS 11.0 32160702
UNSPSC 12352203
Alias GWB-BC2AA0
Similar products 20-783-315050
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Genway ID:
GWB-BC2AA0
Specificity:
CD200R
Isotype:
IgG2a
Preparation:
Purified IgG prepared by affinity chromatography on Protein G from tissue culture supernatant
Buffer Solution:
Phosphate buffered saline pH7. 4
Preservative Stabilisers:
0. 09% Sodium AzideApprox. Protein Concentrations: IgG concentration 1. 0 mg/ml
Immunogen:
Fusion protein mCD200RCD4d3+4
Specificity:
Recognises mouse CD200R a cell surface glycoprotein (also known as OX2R) In mouse CD200R is expressed primarily by peripheral blood monocytes and neutrophils but also by other leucocytes including T-lymphocytes and mast cells (1) . Studies suggest that CD200-CD200R interaction may be involved in the control of myeloid cellular function. Recommended Negative Controls: RAT IgG2a NEGATIVE CONTROLRecommended Secondary Antibodies: Goat Anti Rat IgGRabbit Anti Rat IgGGoat Anti Rat IgG (MOUSE ADSORBED)
Function:
Receptor for the CD200/OX2 cell surface glycoprotein. Ref. 3Ref. 6Subcellular locationCell membrane; Single-pass type I membrane protein. Tissue specificityExpressed in granulocytes monocytes most T cells and a subset of NK NKT and B cells (at protein level). Expressed in the spleen lung liver testis bone marrow lymph nodes spinal cord kidney uterus and small intestine. Expressed in mast and dendritic cells. Expressed in the lung of N. brasiliensis-infected mice. Ref. 3Ref. 6Ref. 4Ref. 5Sequence similaritiesBelongs to the CD200R family. Contains 1 Ig-like C2-type (immunoglobulin-like) domain. Contains 1 Ig-like V-type (immunoglobulin-like) domain. Caution: May be expressed in adult splenic cells (Ref. 6) as the antibody used could not discriminate between CD200R1 and CD200R4. May be expressed in uterus at 12. 5 dpc (at protein level) (Ref. 4) as the antibody used could not discriminate between CD200R1 and CD200R4. [1] \" Characterization and chromosomal localization of the human homologue of a rat AMP-activated protein kinase-encoding gene: a major regulator of lipid metabolism in mammals. \" Aguan K. Scott J. See C. G. Sarkar N. H. Gene 149:345-350(1994) [PubMed: 7959015] [Abstract]Cited for: NUCLEOTIDE SEQUENCE [MRNA] FUNCTION. Tissue: Heart. [2] \" Molecular cloning expression and chromosomal localisation of human AMP-activated protein kinase. \" Beri R. K. Marley A. E. See C. G. Sopwith W. F. Aguan K. Carling D. Scott J. Carey F. FEBS Lett. 356:117-121(1994) [PubMed: 7988703] [Abstract]Cited for: NUCLEOTIDE SEQUENCE [MRNA]. Tissue: Skeletal muscle. [3] \" The DNA sequence and biological annotation of human chromosome 1. \" Gregory S. G. Barlow K. F. McLay K. E. Kaul R. Swarbreck D. Dunham A. Scott C. E. Howe K. L. Woodfine K. Spencer C. C. A. Jones M. C. Gillson C. Searle S. Zhou Y. Kokocinski F. McDonald L. Evans R. Phillips K. Atkinson A. Cooper R. Jones C. Hall R. E. Andrews T. D. Lloyd C. Ainscough R. Almeida J. P. Ambrose K. D. Anderson F. Andrew R. W. Ashwell R. I. S. Aubin K. Babbage A. K. Bagguley C. L. Bailey J. Beasley H. Bethel G. Bird C. P. Bray-Allen S. Brown J. Y. Brown A. J. Buckley D. Burton J. Bye J. Carder C. Chapman J. C. Clark S. Y. Clarke G. Clee C. Cobley V. Collier R. E. Corby N. Coville G. J. Davies J. Deadman R. Dunn M. Earthrowl M. Ellington A. G. Errington H. Frankish A. Frankland J. French L. Garner P. Garnett J. Gay L. Ghori M. R. J. Gibson R. Gilby L. M. Gillett W. Glithero R. J. Grafham D. V. Griffiths C. Griffiths-Jones S. Grocock R. Hammond S. Harrison E. S. I. Hart E. Haugen E. Heath P. D. Holmes S. Holt K. Howden P. J. Hunt A. R. Hunt S. E. Hunter G. Isherwood J. James R. Johnson C. Johnson D. Joy A. Kay M. Kershaw J. K. Kibukawa M. Kimberley A. M. King A. Knights A. J. Lad H. Laird G. Lawlor S. Leongamornlert D. A. Lloyd D. M. Loveland J. Lovell J. Lush M. J. Lyne R. Martin S. Mashreghi-Mohammadi M. Matthews L. Matthews N. S. W. McLaren S. Milne S. Mistry S. Moore M. J. F. Nickerson T. O\' Dell C. N. Oliver K. Palmeiri A. Palmer S. A. Parker A. Patel D. Pearce A. V. Peck A. I. Pelan S. Phelps K. Phillimore B. J. Plumb R. Rajan J. Raymond C. Rouse G. Saenphimmachak C. Sehra H. K. Sheridan E. Shownkeen R. Sims S. Skuce C. D. Smith M. Steward C. Subramanian S. Sycamore N. Tracey A. Tromans A. Van Helmond Z. Wall M. Wallis J. M. White S. Whitehead S. L. Wilkinson J. E. Willey D. L. Williams H. Wilming L. Wray P. W. Wu Z. Coulson A. Vaudin M. Sulston J. E. Durbin R. M. Hubbard T. Wooster R. Dunham I. Carter N. P. McVean G. Ross M. T. Harrow J. Olson M. V. Beck S. Rogers J. Bentley D. R. Nature 441:315-321(2006) [PubMed: 16710414] [Abstract]Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA]. [4] \" The status quality and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC). \" The MGC Project TeamGenome Res. 14:2121-2127(2004) [PubMed: 15489334] [Abstract]Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA]. [5] \" Combining protein-based IMAC peptide-based IMAC and MudPIT for efficient phosphoproteomic analysis. \" Cantin G. T. Yi W. Lu B. Park S. K. Xu T. Lee J. -D. Yates J. R. IIIJ. Proteome Res. 7:1346-1351(2008) [PubMed: 18220336] [Abstract]Cited for: PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-173 AND SER-176 MASS SPECTROMETRY. Tissue: Cervix carcinoma. [6] \" Kinase-selective enrichment enables quantitative phosphoproteomics of the kinome across the cell cycle. \" Daub H. Olsen J. V. Bairlein M. Gnad F. Oppermann F. S. Korner R. Greff Z. Keri G. Stemmann O. Mann M. Mol. Cell 31:438-448(2008) [PubMed: 18691976] [Abstract]Cited for: PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-176 AND SER-377 MASS SPECTROMETRY. Tissue: Cervix carcinoma. [7] \" A quantitative atlas of mitotic phosphorylation. \" Dephoure N. Zhou C. Villen J. Beausoleil S. A. Bakalarski C. E. Elledge S. J. Gygi S. P. Proc. Natl. Acad. Sci. U. S. A. 105:10762-10767(2008) [PubMed: 18669648] [Abstract]Cited for: PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-377 MASS SPECTROMETRY. Tissue: Cervix carcinoma. [8] Colinge J. Superti-Furga G. Bennett K. L. Submitted (OCT-2008) to UniProtKBCited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS]. [9] \" Lys-N and trypsin cover complementary parts of the phosphoproteome in a refined SCX-based approach. \" Gauci S. Helbig A. O. Slijper M. Krijgsveld J. Heck A. J. Mohammed S. Anal. Chem. 81:4493-4501(2009) [PubMed: 19413330] [Abstract]Cited for: PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-377 MASS SPECTROMETRY. Tissue: Embryonic kidney. [10] \" Large-scale proteomics analysis of the human kinome. \" Oppermann F. S. Gnad F. Olsen J. V. Hornberger R. Greff Z. Keri G. Mann M. Daub H. Mol. Cell. Proteomics 8:1751-1764(2009) [PubMed: 19369195] [Abstract]Cited for: PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-377 AND SER-500 MASS SPECTROMETRY.

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