Recombinant Mouse Asprosin (N-8His)

Recombinant Mouse Asprosin (N-8His)
Item number Size Datasheet Manual SDS Delivery time Quantity Price
ELK-EPT137.50 50 µg - -

10 - 15 business days*

956.00€
 
Recombinant Mouse Fibrillin-1 is produced by our Mammalian expression system and the target gene... more
Product information "Recombinant Mouse Asprosin (N-8His)"
Recombinant Mouse Fibrillin-1 is produced by our Mammalian expression system and the target gene encoding Ser2734-His2873 is expressed with a 8His tag at the N-terminus. Asprosin is a protein hormone that is produced by white adipose tissue in mammals (and potentially by other tissues), which is then transported to the liver and stimulates it to release glucose into the blood stream. In the liver asprosin activates rapid glucose release by a cAMP-dependent pathway. The glucose release by the liver into the blood stream is vital for brain function and survival during fasting. People with neonatal progeroid syndrome lack asprosin, while people with insulin resistance have it in abundance. In animal tests asprosin showed potential for treating type 2 diabetes. When antibodies targeting asprosin were injected into diabetic mice, blood glucose and insulin levels improved. Protein Function: Structural component of the 10-12 nm diameter microfibrils of the extracellular matrix, which conveys both structural and regulatory properties to load-bearing connective tissues. Fibrillin-1-containing microfibrils provide long-term force bearing structural support. In tissues such as the lung, blood vessels and skin, microfibrils form the periphery of the elastic fiber, acting as a scaffold for the deposition of elastin. In addition, microfibrils can occur as elastin-independent networks in tissues such as the ciliary zonule, tendon, cornea and glomerulus where they provide tensile strength and have anchoring roles. Fibrillin-1 also plays a key role in tissue homeostasis through specific interactions with growth factors, such as the bone morphogenetic proteins (BMPs), growth and differentiation factors (GDFs) and latent transforming growth factor-beta-binding proteins (LTBPs), cell-surface integrins and other extracellular matrix protein and proteoglycan components (By similarity). Regulates osteoblast maturation by controlling TGF-beta bioavailability and calibrating TGF-beta and BMP levels, respectively (PubMed:20855508). Negatively regulates osteoclastogenesis by binding and sequestering an osteoclast differentiation and activation factor TNFSF11. This leads to disruption of TNFSF11-induced Ca(2+) signaling and impairment of TNFSF11-mediated nuclear translocation and activation of transcription factor NFATC1 which regulates genes important for osteoclast differentiation and function (PubMed:24039232). Mediates cell adhesion via its binding to cell surface receptors integrins ITGAV:ITGB3 and ITGA5:ITGB1. Binds heparin and this interaction plays an important role in the assembly of microfibrils (By similarity) , Adipokine secreted by white adipose tissue that plays an important regulatory role in the glucose metabolism of liver, muscle and pancreas (PubMed:30997682, PubMed:31230984). Hormone that targets the liver in response to fasting to increase plasma glucose levels (PubMed:31230984). Binds the olfactory receptor Olfr734 at the surface of hepatocytes and promotes hepatocyte glucose release by activating the protein kinase A activity in the liver, resulting in rapid glucose release into the circulation (PubMed:31230984). May act as a regulator of adaptive thermogenesis by inhibiting browning and energy consumption, while increasing lipid deposition in white adipose tissue (PubMed:33705351). Also acts as an orexigenic hormone that increases appetite: crosses the blood brain barrier and exerts effects on the hypothalamus (PubMed:29106398). In the arcuate nucleus of the hypothalamus, asprosin directly activates orexigenic AgRP neurons and indirectly inhibits anorexigenic POMC neurons, resulting in appetite stimulation (PubMed:29106398, PubMed:32337066). Activates orexigenic AgRP neurons via binding to the olfactory receptor Olfr734 (PubMed:32337066). May also play a role in sperm motility in testis via interaction with Olfr734 receptor (PubMed:31798959) [The Uniprot Consortium]
Keywords: Fbn1, Fibrillin-1
Supplier: ELK Biotechnology
Supplier-Nr: EPT137

Properties

Conjugate: No
Host: Human cells
Species reactivity: mouse
MW: 30 kD
Format: Lyophilized

Handling & Safety

Storage: -20°C (avoid repeat freezing and thawing cycles)
Shipping: +20°C (International: °C)
Caution
Our products are for laboratory research use only: Not for administration to humans!
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