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  • Fibronectin Antibodies

Invitrogen

Fibronectin Recombinant Rabbit Monoclonal Antibody (5I8T1)

Advanced Verification
View all (99) Fibronectin antibodies

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Datasheet
Protocols
Questions & Answers

Cite Fibronectin Recombinant Rabbit Monoclonal Antibody (5I8T1)

  • Antibody Testing Data (3)
  • Advanced Verification (1)
Fibronectin Antibody in Immunocytochemistry (ICC/IF)
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Fibronectin Antibody in Immunocytochemistry (ICC/IF)
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Fibronectin Antibody (MA5-42661) in ICC/IF

Confocal imaging (Immunocytochemistry) of Fibronectin in HeLa cells. Samples were incubated with Fibronectin Monoclonal antibody (Product # MA5-42661) using a dilution of 1:50 (Red). The cells were counterstained with alpha Tubulin Mouse mAb (dilution 1:400) (Green). DAPI was used for nuclear staining (blue). Objective: 100x. {{ $ctrl.currentElement.advancedVerification.fullName }} validation info. View more
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Fibronectin Antibody in Immunocytochemistry (ICC/IF)
Fibronectin Antibody in Western Blot (WB)
Fibronectin Antibody in Western Blot (WB)
Fibronectin Antibody

Product Details

MA5-42661

Applications
Tested Dilution
Publications

Western Blot (WB)

1:2,000-1:6,000
-

Immunocytochemistry (ICC/IF)

1:50-1:200
-

ELISA (ELISA)

1 µg/mL
-
Product Specifications

Species Reactivity

Human, Mouse

Host/Isotype

Rabbit / IgG

Expression System

HEK293 cells

Class

Recombinant Monoclonal

Type

Antibody

Clone

5I8T1

Immunogen

Recombinant fusion protein containing a sequence corresponding to amino acids 1-2477 of human FN1 (P02751)

Conjugate

Unconjugated Unconjugated Unconjugated

Form

Liquid

Concentration

1.5 mg/mL

Purification

Affinity Chromatography

Storage buffer

PBS, pH 7.3, with 50% glycerol, 0.05% BSA

Contains

0.02% sodium azide

Storage conditions

-20°C, Avoid Freeze/Thaw Cycles

Shipping conditions

Ambient (domestic); Wet ice (international)

RRID

AB_2911802

Product Specific Information

Positive test controls include: HepG2. The target is usually found in the following locations: Secreted, extracellular matrix, extracellular space.

Immunogen sequence: MLRGPGPGLL LLAVQCLGTA VPSTGASKSK RQAQQMVQPQ SPVAVSQSKP GCYDNGKHYQ INQQWERTYL GNALVCTCYG GSRGFNCESK PEAEETCFDK YTGNTYRVGD TYERPKDSMI WDCTCIGAGR GRISCTIANR CHEGGQSYKI GDTWRRPHET GGYMLECVCL GNGKGEWTCK PIAEKCFDHA AGTSYVVGET WEKPYQGWMM VDCTCLGEGS GRITCTSRNR CNDQDTRTSY RIGDTWSKKD NRGNLLQCIC TGNGRGEWKC ERHTSVQTTS SGSGPFTDVR AAVYQPQPHP QPPPYGHCVT DSGVVYSVGM QWLKTQGNKQ MLCTCLGNGV SCQETAVTQT YGGNSNGEPC VLPFTYNGRT FYSCTTEGRQ DGHLWCSTTS NYEQDQKYSF CTDHTVLVQT RGGNSNGALC HFPFLYNNHN YTDCTSEGRR DNMKWCGTTQ NYDADQKFGF CPMAAHEEIC TTNEGVMYRI GDQWDKQHDM GHMMRCTCVG NGRGEWTCIA YSQLRDQCIV DDITYNVNDT FHKRHEEGHM LNCTCFGQGR GRWKCDPVDQ CQDSETGTFY QIGDSWEKYV HGVRYQCYCY GRGIGEWHCQ PLQTYPSSSG PVEVFITETP SQPNSHPIQW NAPQPSHISK YILRWRPKNS VGRWKEATIP GHLNSYTIKG LKPGVVYEGQ LISIQQYGHQ EVTRFDFTTT STSTPVTSNT VTGETTPFSP LVATSESVTE ITASSFVVSW VSASDTVSGF RVEYELSEEG DEPQYLDLPS TATSVNIPDL LPGRKYIVNV YQISEDGEQS LILSTSQTTA PDAPPDTTVD QVDDTSIVVR WSRPQAPITG YRIVYSPSVE GSSTELNLPE TANSVTLSDL QPGVQYNITI YAVEENQEST PVVIQQETTG TPRSDTVPSP RDLQFVEVTD VKVTIMWTPP ESAVTGYRVD VIPVNLPGEH GQRLPISRNT FAEVTGLSPG VTYYFKVFAV SHGRESKPLT AQQTTKLDAP TNLQFVNETD STVLVRWTPP RAQITGYRLT VGLTRRGQPR QYNVGPSVSK YPLRNLQPAS EYTVSLVAIK GNQESPKATG VFTTLQPGSS IPPYNTEVTE TTIVITWTPA PRIGFKLGVR PSQGGEAPRE VTSDSGSIVV SGLTPGVEYV YTIQVLRDGQ ERDAPIVNKV VTPLSPPTNL HLEANPDTGV LTVSWERSTT PDITGYRITT TPTNGQQGNS LEEVVHADQS SCTFDNLSPG LEYNVSVYTV KDDKESVPIS DTIIPEVPQL TDLSFVDITD SSIGLRWTPL NSSTIIGYRI TVVAAGEGIP IFEDFVDSSV GYYTVTGLEP GIDYDISVIT LINGGESAPT TLTQQTAVPP PTDLRFTNIG PDTMRVTWAP PPSIDLTNFL VRYSPVKNEE DVAELSISPS DNAVVLTNLL PGTEYVVSVS SVYEQHESTP LRGRQKTGLD SPTGIDFSDI TANSFTVHWI APRATITGYR IRHHPEHFSG RPREDRVPHS RNSITLTNLT PGTEYVVSIV ALNGREESPL LIGQQSTVSD VPRDLEVVAA TPTSLLISWD APAVTVRYYR ITYGETGGNS PVQEFTVPGS KSTATISGLK PGVDYTITVY AVTGRGDSPA SSKPISINYR TEIDKPSQMQ VTDVQDNSIS VKWLPSSSPV TGYRVTTTPK NGPGPTKTKT AGPDQTEMTI EGLQPTVEYV VSVYAQNPSG ESQPLVQTAV TNIDRPKGLA FTDVDVDSIK IAWESPQGQV SRYRVTYSSP EDGIHELFPA PDGEEDTAEL QGLRPGSEYT VSVVALHDDM ESQPLIGTQS TAIPAPTDLK FTQVTPTSLS AQWTPPNVQL TGYRVRVTPK EKTGPMKEIN LAPDSSSVVV SGLMVATKYE VSVYALKDTL TSRPAQGVVT TLENVSPPRR ARVTDATETT ITISWRTKTE TITGFQVDAV PANGQTPIQR TIKPDVRSYT ITGLQPGTDY KIYLYTLNDN ARSSPVVIDA STAIDAPSNL RFLATTPNSL LVSWQPPRAR ITGYIIKYEK PGSPPREVVP RPRPGVTEAT ITGLEPGTEY TIYVIALKNN QKSEPLIGRK KTDELPQLVT LPHPNLHGPE ILDVPSTVQK TPFVTHPGYD TGNGIQLPGT SGQQPSVGQQ MIFEEHGFRR TTPPTTATPI RHRPRPYPPN VGEEIQIGHI PREDVDYHLY PHGPGLNPNA STGQEALSQT TISWAPFQDT SEYIISCHPV GTDEEPLQFR VPGTSTSATL TGLTRGATYN VIVEALKDQQ RHKVREEVVT VGNSVNEGLN QPTDDSCFDP YTVSHYAVGD EWERMSESGF KLLCQCLGFG SGHFRCDSSR WCHDNGVNYK IGEKWDRQGE NGQMMSCTCL GNGKGEFKCD PHEATCYDDG KTYHVGEQWQ KEYLGAICSC TCFGGQRGWR CDNCRRPGGE PSPEGTTGQS YNQYSQRYHQ RTNTNVNCPI ECFMPLDVQA DREDSRE

Target Information

Fibronectin is a disulfide-bonded dimer with a molecular weight range of 230-250 kDa. In the extracellular matrix of several connective tissues and vessels, fibronectin is present as an insoluble protein that is extensively cross-linked by interchain disulfide bonds forming high molecular mass polymers. Fibronectin is most abundant during embryonic development and tissue remodeling. Fibronectin is also present at high concentrations as a soluble plasma protein. Fibronectin is organized as a linear series of repeating modules which form domains for interaction with fibronectin itself, other matrix components (e.g. collagen and heparin) and receptors on cells (e.g. integrins). Fibronectin is present in a soluble dimeric form in plasma, and in a dimeric or multimeric form at the cell surface and in extracellular matrix. Fibronectin is involved in cell adhesion and migration processes including embryogenesis, wound healing, blood coagulation, host defense, and metastasis. Fibronectin has been implicated in carcinoma development in lung cancer. Further, Fibronectin expression is increased especially in non-small cell lung carcinoma. The adhesion of lung carcinoma cells to Fibronectin enhances tumorgenecity and confers resistance to apoptosis induced by standard chemotherapeutic agents. The gene encoding Fibronectin has three regions subject to alternative splicing, with the potential to produce 20 different transcript variants. However, the full-length nature of some Fibronectin variants has not been determined.

For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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Bioinformatics

Protein Aliases: CIG; Cold insoluble globulin (CIG); Cold-insoluble globulin; DKFZp686F10164; DKFZp686H0342; DKFZp686I1370; DKFZp686O13149; ferritin L subunit; ferritin L-chain; Fibronectin; FN; Migration stimulating factor (MSF); migration-stimulating factor

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Gene Aliases: CIG; E330027I09; ED-B; FINC; FN; Fn-1; FN1; FNZ; GFND; GFND2; LETS; MSF

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UniProt ID: (Human) P02751, (Mouse) P11276

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Entrez Gene ID: (Human) 2335, (Mouse) 14268

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Function(s)
protease binding integrin binding protein binding collagen binding heparin binding peptidase activator activity identical protein binding mercury ion binding
Process(es)
angiogenesis cell activation acute-phase response cell-substrate junction assembly cell adhesion cell-matrix adhesion calcium-independent cell-matrix adhesion glial cell migration regulation of cell shape positive regulation of peptidase activity peptide cross-linking extracellular matrix organization positive regulation of cell migration integrin activation substrate adhesion-dependent cell spreading endodermal cell differentiation wound healing negative regulation of apoptotic process positive regulation of axon extension positive regulation of chemotaxis cellular response to mercury ion cellular response to interleukin-1 regulation of protein phosphorylation platelet degranulation response to ischemia positive regulation of cell proliferation response to wounding response to ozone positive regulation of gene expression extracellular matrix disassembly cellular response to vascular endothelial growth factor stimulus cellular response to platelet-derived growth factor stimulus positive regulation of fibroblast proliferation leukocyte migration response to glucocorticoid regulation of ERK1 and ERK2 cascade cellular response to lipopolysaccharide cellular response to glucose stimulus cellular response to prostaglandin E stimulus cellular response to transforming growth factor beta stimulus cellular response to BMP stimulus positive regulation of substrate-dependent cell migration, cell attachment to substrate negative regulation of transforming growth factor-beta secretion
It has to be done as per old AB suggested Products section.
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