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Glucose transporter type 4 (GLUT4), also known as solute carrier family 2, facilitated glucose transporter member 4, is a protein encoded, in humans, by the SLC2A4 gene. GLUT4 is the insulin -regulated glucose transporter found primarily in adipose tissues and striated muscle (skeletal and cardiac).
n/a Ensembl ENSG00000125520 n/a UniProt Q9NR83 n/a RefSeq (mRNA) NM_020062 n/a RefSeq (protein) NP_064446 n/a Location (UCSC) Chr 20: 63.74 – 63.74 Mb n/a PubMed search n/a Wikidata View/Edit Human SLC2A4 regulator is a protein that in humans is encoded by the SLC2A4RG gene. The protein encoded by this gene is a nuclear transcription factor involved in the activation of the solute carrier ...
GLUT4: Expressed in adipose tissues and striated muscle (skeletal muscle and cardiac muscle). Is the insulin-regulated glucose transporter. Responsible for insulin-regulated glucose storage. GLUT14: Expressed in testes: similarity to GLUT3 [12]
TUG releases the GLUT4 containing vesicles (GSVs) in response to insulin stimulation which allows it to move to the plasma membrane. [2] TUG has an N-terminal ubiquitin-like protein domain (UBL1) which in similar proteins appears to participate in protein-protein interactions. [2]
SIRIUS is a Java-based open-source software for the identification of small molecules from fragmentation mass spectrometry data without the use of spectral libraries. It combines the analysis of isotope patterns in MS1 spectra with the analysis of fragmentation patterns in MS2 spectra.
De novo identification tool for small molecules that works with Microsoft Excel (2010, 2013, 2016 and 2019). This software treats small molecules as mathematical partitions of the molecular mass and generates subfragment formulas with atoms that are sets of partitions comprising the molecular formula. Rational Numbers SPS Proprietary
On Monday, the surging popularity of DeepSeek's new R1 model, which vaulted to the top of app download charts, prompted a market rout for many of AI's biggest players.
When the insulin binds to these alpha subunits, 'glucose transport 4' (GLUT4) is released and transferred to the cell membrane to regulate glucose transport in and out of the cell. With the release of GLUT4, the allowance of glucose into cells is increased, and therefore the concentration of blood glucose might decrease.