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Typical Testing Data/Standard Curve (for reference only) (Fig.1. Mouse TGF-beta1 Standard Curve.)

Mouse, Rat TGF-beta1 ELISA Kit | TGF-beta1 elisa kit

Mouse TGF-beta1 ELISA Kit

Gene Names
Tgfb1; Tgfb; Tgfb-1; TGFbeta1; TGF-beta1
Reactivity
Mouse, Rat
Synonyms
TGF-beta1; Mouse TGF-beta1 ELISA Kit; TGFB1; CED; DPD1; LAP; TGFB; TGFbeta; TGF-beta 1 protein; latency-associated peptide; TGF-beta1 elisa kit
Ordering
For Research Use Only!
Reactivity
Mouse, Rat
Specificity
Mouse TGF-beta1 ELISA Kit has high sensitivity and excellent specificity for detection of Mouse TGF-beta1. No significant cross-reactivity or interference between Mouse TGF-beta1 and analogues was observed.
Sequence Length
390
Assay Type
Sandwich ELISA (Quantitative)
Samples
Cell Culture Supernatants, Serum, Plasma, Other Biological Fluids
Detection Range
15.6 pg/ml-1000 pg/ml
Detection Method
Colorimetric
Limit of Detection
8 pg/mL
Usage Notes
* Do not mix components from different kit lots or use reagents beyond the kit expiration date.
* Allow all reagents to warm to room temperature for at least 30 minutes before opening.
* Pre-rinse the pipet tip with reagent, use fresh pipet tips for each sample, standard and reagent to avoid contamination.
* Unused wells must be kept desiccated at 4 degree C in the sealed bag provided.
* Mix Thoroughly is very important for the result. It is recommended using low frequency oscillator or slight hand shaking every 10 minutes.
* It is recommended that all samples and standards be assayed in duplicate or triplicate.
Preparation and Storage
Store at 2-8 degree C.

Typical Testing Data/Standard Curve (for reference only)

(Fig.1. Mouse TGF-beta1 Standard Curve.)

Typical Testing Data/Standard Curve (for reference only) (Fig.1. Mouse TGF-beta1 Standard Curve.)
Related Product Information for TGF-beta1 elisa kit
Description: Mouse TGF-beta1 ELISA Kit employs a two-site sandwich ELISA to quantitate TGF-beta1 in samples. An antibody specific for TGF-beta1 has been pre-coated onto a microplate. Standards and samples are pipetted into the wells and any TGF-beta1 present is bound by the immobilized antibody. After removing any unbound substances, a biotin-conjugated antibody specific for TGF-beta1 is added to the wells. After washing, proprietary Streptavidin-HRP conjugates is added to the wells. Following a wash to remove any unbound streptavidin-enzyme reagent, a substrate solution is added to the wells and color develops in proportion to the amount of TGF-beta1 bound in the initial step. The color development is stopped and the intensity of the color is measured.

Background: TGF-beta is capable of producing a variety of effects and virtually all cell types respond to this factor in some way. The inappropriate presence of active TGF-beta1 has been implicated in a variety of pathological conditions Because of the necessity for regulating its activity tightly, TGF-beta is secreted by cells in the form of an inactive complex. This complex consists of TGF-beta1 associated non-covalently with a protein designated the latency associated peptide (LAP). TGF-beta1 and LAP represent components of a pro-peptide that is cleaved in a post-golgi compartment prior to secretion. LAP and TGF-beta1 each consist of a disulfide-linked homodimer and the association of these two components renders TGF-beta1 inactive and inaccessible to anti-TGF-beta antibodies.

NCBI and Uniprot Product Information

NCBI GI #
NCBI GeneID
UniProt Accession #
NCBI Official Full Name
Transforming growth factor beta-1 proprotein
NCBI Official Synonym Full Names
transforming growth factor, beta 1
NCBI Official Symbol
Tgfb1
NCBI Official Synonym Symbols
Tgfb; Tgfb-1; TGFbeta1; TGF-beta1
NCBI Protein Information
transforming growth factor beta-1 proprotein
UniProt Protein Name
Transforming growth factor beta-1
UniProt Gene Name
Tgfb1
UniProt Synonym Gene Names
TGF-beta-1; LAP
UniProt Entry Name
TGFB1_MOUSE

NCBI Description

This gene encodes a secreted ligand of the TGF-beta (transforming growth factor-beta) superfamily of proteins. Ligands of this family bind various TGF-beta receptors leading to recruitment and activation of SMAD family transcription factors that regulate gene expression. The encoded preproprotein is proteolytically processed to generate a latency-associated peptide (LAP) and a mature peptide, and is found in either a latent form composed of a mature peptide homodimer, a LAP homodimer, and a latent TGF-beta binding protein, or in an active form consisting solely of the mature peptide homodimer. The mature peptide may also form heterodimers with other TGF-beta family members. This encoded protein regulates cell proliferation, differentiation and growth, and can modulate expression and activation of other growth factors including interferon gamma and tumor necrosis factor alpha. Mice lacking a functional copy of this gene develop severe multifocal inflammatory disease, yolk sac defects and colon cancer. [provided by RefSeq, Aug 2016]

Uniprot Description

TGFB1: Multifunctional protein that controls proliferation, differentiation and other functions in many cell types. Many cells synthesize TGFB1 and have specific receptors for it. It positively and negatively regulates many other growth factors. It plays an important role in bone remodeling as it is a potent stimulator of osteoblastic bone formation, causing chemotaxis, proliferation and differentiation in committed osteoblasts. Homodimer; disulfide-linked, or heterodimer with TGFB2. Secreted and stored as a biologically inactive form in the extracellular matrix in a 290 kDa complex (large latent TGF-beta1 complex) containing the TGFB1 homodimer, the latency-associated peptide (LAP), and the latent TGFB1 binding protein-1 (LTBP1). The complex without LTBP1 is known as the'small latent TGF-beta1 complex'. Dissociation of the TGFB1 from LAP is required for growth factor activation and biological activity. Release of the large latent TGF-beta1 complex from the extracellular matrix is carried out by the matrix metalloproteinase MMP3. May interact with THSD4; this interaction may lead to sequestration by FBN1 microfibril assembly and attenuation of TGFB signaling. Interacts with the serine proteases, HTRA1 and HTRA3: the interaction with either inhibits TGFB1-mediated signaling. The HTRA protease activity is required for this inhibition. Interacts with CD109, DPT and ASPN. Activated in vitro at pH below 3.5 and over 12.5. Highly expressed in bone. Abundantly expressed in articular cartilage and chondrocytes and is increased in osteoarthritis (OA). Co-localizes with ASPN in chondrocytes within OA lesions of articular cartilage. Belongs to the TGF-beta family.

Protein type: Secreted, signal peptide; Motility/polarity/chemotaxis; Secreted

Cellular Component: proteinaceous extracellular matrix; extracellular space; cell surface; microvillus; cell soma; axon; cell; cytoplasm; extracellular region; nucleus; secretory granule

Molecular Function: protein binding; protein homodimerization activity; enzyme binding; growth factor activity; protein heterodimerization activity; punt binding; cytokine activity; protein N-terminus binding; glycoprotein binding; transforming growth factor beta receptor binding; antigen binding

Biological Process: positive regulation of apoptosis; positive regulation of transcription, DNA-dependent; SMAD protein nuclear translocation; positive regulation of protein amino acid dephosphorylation; activation of NF-kappaB transcription factor; regulation of protein import into nucleus; positive regulation of MAP kinase activity; regulation of transforming growth factor beta receptor signaling pathway; negative regulation of ossification; cell cycle arrest; positive regulation of isotype switching to IgA isotypes; regulatory T cell differentiation; T cell differentiation; positive regulation of interleukin-17 production; regulation of CD4-positive, CD25-positive, alpha-beta regulatory T cell differentiation; positive regulation of chemotaxis; positive regulation of smooth muscle cell differentiation; positive regulation of blood vessel endothelial cell migration; negative regulation of immune response; regulation of sodium ion transport; negative regulation of fat cell differentiation; negative regulation of blood vessel endothelial cell migration; lymph node development; positive regulation of protein secretion; regulation of MAPKKK cascade; positive regulation of cell division; positive regulation of transcription from RNA polymerase II promoter; response to progesterone stimulus; endoderm development; myelination; positive regulation of odontogenesis; negative regulation of phagocytosis; evasion of host defenses by virus; T cell activation; wound healing; positive regulation of cellular protein metabolic process; myeloid dendritic cell differentiation; negative regulation of transcription from RNA polymerase II promoter; phosphate metabolic process; response to organic substance; negative regulation of cell proliferation; CD4-positive, CD25-positive, alpha-beta regulatory T cell lineage commitment; negative regulation of T cell proliferation; mammary gland development; regulation of DNA binding; negative regulation of release of sequestered calcium ion into cytosol; positive regulation of cell proliferation; protein kinase B signaling cascade; protein export from nucleus; inflammatory response; positive regulation of exit from mitosis; epidermal growth factor receptor signaling pathway; mitotic cell cycle checkpoint; common-partner SMAD protein phosphorylation; positive regulation of phosphoinositide 3-kinase activity; positive regulation of peptidyl-serine phosphorylation; SMAD protein complex assembly; regulation of cell proliferation; cell proliferation; positive regulation of protein kinase B signaling cascade; positive regulation of protein complex assembly; negative regulation of interleukin-17 production; positive regulation of protein import into nucleus; epithelial to mesenchymal transition; negative regulation of cell growth; negative regulation of cell-cell adhesion; negative regulation of skeletal muscle development; mononuclear cell proliferation; protein amino acid phosphorylation; hyaluronan catabolic process; regulation of apoptosis; negative regulation of neuroblast proliferation; receptor catabolic process; transforming growth factor beta receptor signaling pathway; positive regulation of superoxide release; germ cell migration; chondrocyte differentiation; negative regulation of mitotic cell cycle; T cell homeostasis; defense response to fungus, incompatible interaction; cell growth; tolerance induction to self antigen; regulation of striated muscle development; skeletal muscle development; organ regeneration; cell activation; organ morphogenesis; negative regulation of DNA replication; hemopoietic progenitor cell differentiation; negative regulation of transcription, DNA-dependent; positive regulation of epithelial cell proliferation; positive regulation of collagen biosynthetic process; defense response; response to estradiol stimulus; negative regulation of cell cycle; regulation of interleukin-23 production; positive regulation of histone deacetylation; negative regulation of protein amino acid phosphorylation; lipopolysaccharide-mediated signaling pathway; adaptive immune response based on somatic recombination of immune receptors built from immunoglobulin superfamily domains; skeletal development; negative regulation of epithelial cell proliferation; intercellular junction assembly and maintenance; regulation of binding; MAPKKK cascade; morphogenesis of a branching structure; cellular calcium ion homeostasis; protein import into nucleus, translocation; ATP biosynthetic process; positive regulation of histone acetylation; positive regulation of protein amino acid phosphorylation; negative regulation of myoblast differentiation; negative regulation of T cell activation; growth; positive regulation of cell migration

Research Articles on TGF-beta1

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Product Notes

The Mouse, Rat TGF-beta1 tgfb1 (Catalog #AAA9711587) is an ELISA Kit and is intended for research purposes only. The product is available for immediate purchase. The AAA9711587 ELISA Kit recognizes Mouse, Rat TGF-beta1. It is sometimes possible for the material contained within the vial of "TGF-beta1, ELISA Kit" to become dispersed throughout the inside of the vial, particularly around the seal of said vial, during shipment and storage. We always suggest centrifuging these vials to consolidate all of the liquid away from the lid and to the bottom of the vial prior to opening. Please be advised that certain products may require dry ice for shipping and that, if this is the case, an additional dry ice fee may also be required.

Precautions

All products in the AAA Biotech catalog are strictly for research-use only, and are absolutely not suitable for use in any sort of medical, therapeutic, prophylactic, in-vivo, or diagnostic capacity. By purchasing a product from AAA Biotech, you are explicitly certifying that said products will be properly tested and used in line with industry standard. AAA Biotech and its authorized distribution partners reserve the right to refuse to fulfill any order if we have any indication that a purchaser may be intending to use a product outside of our accepted criteria.

Disclaimer

Though we do strive to guarantee the information represented in this datasheet, AAA Biotech cannot be held responsible for any oversights or imprecisions. AAA Biotech reserves the right to adjust any aspect of this datasheet at any time and without notice. It is the responsibility of the customer to inform AAA Biotech of any product performance issues observed or experienced within 30 days of receipt of said product. To see additional details on this or any of our other policies, please see our Terms & Conditions page.

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