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company name :
Alomone Labs
product type :
chemical
product name :
Native mouse NGF 7S protein
catalog :
N-130
more info or order :
citations: 22
Reference
Vaes N, Schonkeren S, Rademakers G, Holland A, Koch A, Gijbels M, et al. Loss of enteric neuronal Ndrg4 promotes colorectal cancer via increased release of Nid1 and Fbln2. EMBO Rep. 2021;22:e51913 pubmed publisher
Pekas N, Petersen J, Sathyanesan M, Newton S. Design and Development of a Behaviorally Active Recombinant Neurotrophic Factor. Drug Des Devel Ther. 2020;14:5393-5403 pubmed publisher
Stueber T, Eberhardt M, Caspi Y, Lev S, Binshtok A, Leffler A. Differential cytotoxicity and intracellular calcium-signalling following activation of the calcium-permeable ion channels TRPV1 and TRPA1. Cell Calcium. 2017;68:34-44 pubmed publisher
Hao M, Capoccia E, Cirillo C, Boesmans W, Vanden Berghe P. Arundic Acid Prevents Developmental Upregulation of S100B Expression and Inhibits Enteric Glial Development. Front Cell Neurosci. 2017;11:42 pubmed publisher
Guo Y, Zhang Z, Wu H, Luo Z, Hogan Q, Pan B. Increased thrombospondin-4 after nerve injury mediates disruption of intracellular calcium signaling in primary sensory neurons. Neuropharmacology. 2017;117:292-304 pubmed publisher
Niewidok B, Igaev M, Sündermann F, Janning D, Bakota L, Brandt R. Presence of a carboxy-terminal pseudorepeat and disease-like pseudohyperphosphorylation critically influence tau's interaction with microtubules in axon-like processes. Mol Biol Cell. 2016;27:3537-3549 pubmed
Pan B, Yu H, Park J, Yu Y, Luo Z, Hogan Q. Painful nerve injury upregulates thrombospondin-4 expression in dorsal root ganglia. J Neurosci Res. 2015;93:443-53 pubmed publisher
Moschner K, Sündermann F, Meyer H, da Graca A, Appel N, Paululat A, et al. RNA protein granules modulate tau isoform expression and induce neuronal sprouting. J Biol Chem. 2014;289:16814-25 pubmed publisher
Vetter I, Hein A, Sattler S, Hessler S, Touska F, Bressan E, et al. Amplified cold transduction in native nociceptors by M-channel inhibition. J Neurosci. 2013;33:16627-41 pubmed publisher
DeWitt J, Ochoa V, Urschitz J, Elston M, Moisyadi S, Nishi R. Constitutively active TrkB confers an aggressive transformed phenotype to a neural crest-derived cell line. Oncogene. 2014;33:977-85 pubmed publisher
Schemann M, Kugler E, Buhner S, Eastwood C, Donovan J, Jiang W, et al. The mast cell degranulator compound 48/80 directly activates neurons. PLoS ONE. 2012;7:e52104 pubmed publisher
Fanara P, Wong P, Husted K, Liu S, Liu V, Kohlstaedt L, et al. Cerebrospinal fluid-based kinetic biomarkers of axonal transport in monitoring neurodegeneration. J Clin Invest. 2012;122:3159-69 pubmed publisher
Hernández Jiménez M, Ayuso M, Pérez Morgado M, García Recio E, Alcazar A, Martín M, et al. eIF4F complex disruption causes protein synthesis inhibition during hypoxia in nerve growth factor (NGF)-differentiated PC12 cells. Biochim Biophys Acta. 2012;1823:430-8 pubmed publisher
Schmidt S, Mo M, Heidrich F, Celic A, Ehrlich B. C-terminal domain of chromogranin B regulates intracellular calcium signaling. J Biol Chem. 2011;286:44888-96 pubmed publisher
McCallum J, Wu H, Tang Q, Kwok W, Hogan Q. Subtype-specific reduction of voltage-gated calcium current in medium-sized dorsal root ganglion neurons after painful peripheral nerve injury. Neuroscience. 2011;179:244-55 pubmed publisher
Wright M, Ribera A. Brain-derived neurotrophic factor mediates non-cell-autonomous regulation of sensory neuron position and identity. J Neurosci. 2010;30:14513-21 pubmed publisher
Lobanov A, Uzdensky A. Protection of crayfish glial cells but not neurons from photodynamic injury by nerve growth factor. J Mol Neurosci. 2009;39:308-19 pubmed publisher
Vaisid T, Barnoy S, Kosower N. Calpastatin overexpression attenuates amyloid-beta-peptide toxicity in differentiated PC12 cells. Neuroscience. 2008;156:921-31 pubmed publisher
Bennedich Kahn L, Gustafsson L, Olgart Hoglund C. Nerve growth factor enhances neurokinin A-induced airway responses and exhaled nitric oxide via a histamine-dependent mechanism. Pulm Pharmacol Ther. 2008;21:522-32 pubmed publisher
Roux S, Saint Cloment C, Curie T, Girard E, Miana Mena F, Barbier J, et al. Brain-derived neurotrophic factor facilitates in vivo internalization of tetanus neurotoxin C-terminal fragment fusion proteins in mature mouse motor nerve terminals. Eur J Neurosci. 2006;24:1546-54 pubmed
Zimmermann K, Leffler A, Fischer M, Messlinger K, Nau C, Reeh P. The TRPV1/2/3 activator 2-aminoethoxydiphenyl borate sensitizes native nociceptive neurons to heat in wildtype but not TRPV1 deficient mice. Neuroscience. 2005;135:1277-84 pubmed
O Loghlen A, Pérez Morgado M, Salinas M, Martin M. N-acetyl-cysteine abolishes hydrogen peroxide-induced modification of eukaryotic initiation factor 4F activity via distinct signalling pathways. Cell Signal. 2006;18:21-31 pubmed
image
image 1 :
Alomone Labs N-130 image 1
Alomone Labs Native mouse NGF 7S protein promotes neurite outgrowth and survivalin PC12 cells. - Upper panel: Cells were grown on collagen-coated plates in the absence or presence of 5 ng/ml Nativemouse NGF 7S protein(#N-130). The development of neurites over a period of 3 days was visualized by Methylene Blue staining. Lower panel: Cells were grown in the absence of serum and in the presence of varying concentrations of Native mouse NGF 7S protein orNative mouse NGF 2.5S protein ( 95%)(#N-100). Cell survival after 24 h was measured by the XTT method and calculated as a relative percentage of the control and plotted against concentrations used.
product information
cat :
N-130
SKU :
N-130_0.1 mg
Product Name :
Native mouse NGF 7S protein
Group Type :
Non Antibodies
Product Type :
Proteins
Applications :
Neurite outgrowth assay, Cell survival assay
Formulation :
Lyophilized in 0.2% Acetic acid. May contain acetate as a residual counter ion.
Storage After Reconstitution :
The reconstituted solution can be stored at 4°C for up to 1 week. For longer periods (up to 6 months), small aliquots should be stored at -20°C. We do not recommend storing the product in working solutions for longer than a few days. Avoid multiple freeze-thaw cycles.
Reconstitution and Solubility :
Centrifuge the vial (10,000 × g for 5 minutes) before adding solvent to spin down all the powder to the bottom of the vial. The lyophilized product may be difficult to visualize. Add solvent directly to the centrifuged vial. Gently tap, tilt, and roll the vial to aid dissolution. Avoid vigorous vortexing; light vortexing for up to 3 seconds is acceptable if needed. For long-term storage in solution, we recommend preparing a stock solution by dissolving the product in sterile water at a concentration of at least 0.1 mg/mL. Divide the stock solution into small aliquots and store at -20°C. Before use, thaw the relevant vial(s) and dilute to the desired working concentration in your working buffer. It is recommended to prepare fresh solutions in working buffers just before use. Repeated freeze-thaw cycles may result in loss of activity.
Solubility :
Centrifuge the vial before adding solvent (10,000 x g for 5 minutes) to spin down all the powder to the bottom of the vial. The lyophilized product may be difficult to visualize. Add solvent directly to the centrifuged vial. Tap the vial to aid in dissolving the lyophilized product. Tilt and gently roll the liquid over the walls of the vial. Avoid vigorous vortexing. Light vortexing for up to 3 seconds is acceptable if needed. For long-term storage in solution, we recommend preparing a stock solution by dissolving the product in sterile water at a concentration of at least 0.1 mg/mL. Divide the stock solution into small aliquots and store at -20°C. Before use, thaw the relevant vial(s) and dilute to the desired working concentration in your working buffer. It is recommended to prepare fresh solutions in working buffers just before use. Repeat freeze-thawing may result in loss of activity.
Storage Before Reconstitution :
The product is shipped as a lyophilized powder at room temperature. Upon receipt, store the product at -20°C. Protect from moisture.
Origin :
Native protein isolated from mouse submaxillary glands.
Source :
Natural protein
Gene ID :
NGFR, NTRK1
Product Page - Scientific background :
The neurotrophins ("neuro" means nerve and "trophe" means nutrient) are a family of soluble, basic growth factors which regulate neuronal development, maintenance, survival and death in the CNS and PNS.1NGF, the first member of the family to be discovered, was originally purified as a factor able to support survival of sympathetic and sensory spinal neurons in culture.2 It is synthesized and secreted by sympathetic and sensory target organs and provides trophic support to neurons as they reach their final target.3Neurotrophin secretion increases in the nervous system following injury. Schwann cells, fibroblasts, and activated mast cells normally synthesize NGF constitutively, however direct trauma and induction of cytokines combine to increase neurotrophin production in these cells after injury.4NGF is purified in three forms: the 7S, 2.5S and β. The 7S (130 kDa) form occurs naturally in mouse submaxillary glands, and is a multimeric protein composed of two α, one β and two γ subunits. The name is derived from its sedimentation co-efficient, 7S.The biologically active subunit is the β, which is a 26 kDa dimer composed of two identical 120 amino acid chains held together by hydrophobic interactions.5 The α chain stabilizes the 7S complex and binds two zinc ions per 7S complex as a cofactor at the β-γ interface. The γ chain is an arginine specific protease, it may also have plasminogen activator activity as well as mitogenic activity for chick embryo fibroblasts.6 The 2.5S form is 9 amino acids shorter than the β form because of proteolysis that occurs during the purification process.7The structural hallmark of all the neurotrophins is the characteristic arrangement of the disulfide bridges known as the cysteine knot, which has been found in other growth factors such as Platelet-derived growth factor.8 There is a 95.8% homology between the rat and mouse forms, and a 85% homology between the human and mouse.NGF has been shown to regulate neuronal survival, development function and plasticity.9 Recently, involvement of NGF in processes not involving neuronal cells has been shown, such as asthma,10 psoriasis11 and wound healing.12 The biological effects of NGF are mediated by two receptors: TrkA, which is specific for NGF, and p75NTR, which binds all the neurotrophins.13
Supplier :
Alomone Labs
Target :
p75NTR, TrkA receptors
Long Description :
Native Mouse Nerve Growth Factor 7S
Short Description :
Native Mouse Nerve Growth Factor 7S
MW :
130 kDa
Synonyms :
Nerve Growth Factor 7S
Effective Concentration :
EC50 = 0.2 nM
Activity :
NGF is purified in three forms: the 7S, 2.5S and β. The 7S 130 kDa form occurs naturally in mouse submaxillary glands and is a multimeric protein composed of two α, one β and two γ subunits. The biologically active subunit is the β, which is a 26 kDa dimer composed of two identical chains held together by hydrophobic interactions. The α chain stabilizes the 7S complex and binds two zinc ions per 7S complex as a cofactor at the β-γ interface. The γ chain is an arginine specific protease, it may also have plasminongen activator activity as well as mitogenic activity for chick embryo fibroblasts1,2.
Storage of solutions :
The reconstituted solution can be stored at 4°C for up to 1 week. For longer periods (up to 6 months), small aliquots should be stored at -20°C. We do not recommend storing the product in working solutions for longer than a few days. Avoid multiple freeze-thaw cycles.
Lead Time :
1-2 Business Days
Country of origin :
Israel/IL
Purity :
≥98% (HPLC)
CAS No :
93928-24-6
Form :
Lyophilized
Comment :
Contact Alomone Labs for technical support and product customization
Is Toxin :
No
UNSPSC :
12352202
Bioassay Tested :
yes
Cited Application :
Electrophysiology
more info or order :
company information
Alomone Labs
Jerusalem BioPark (JBP), Hadassah Ein Kerem
P.O. Box 4287
Jerusalem 9104201
info@alomone.com
http://www.alomone.com
972 2 531 8002
headquarters: Israel