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InsideWood is an online resource and database for wood anatomy, serving as a reference, research, and teaching tool. Wood anatomy is a sub-area within the discipline of wood science . [ 1 ] [ 2 ] This freely accessible database is purely scientific and noncommercial.
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).
AS160 (Akt substrate of 160 kDa), which was originally known as TBC1 domain family member 4 (TBC1D4), [5] is a Rab GTPase-activating protein that in humans is encoded by the TBC1D4 gene.
1981 (August, reprinted March 2013): New Perspectives in Wood Anatomy: Published on the Occasion of the 50th Anniversary of the International Association of Wood Anatomists [10] 1989: IAWA List of Microscopic Features for Hardwood Identification [11] 1994: Directory of Members [12] 1996: Recent advances in wood anatomy [13]
His expertise in wood identification has been utilized in analysis of antique furniture and art objects for Sotheby's [3] and major museums. [2] His book Identifying Wood: Accurate results with simple tools is an accessible introduction to the topic, [4] and his Understanding Wood is a comprehensive treatment of wood technology. The first ...
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]
When insulin is secreted, glucose uptake of cells increase, since insulin stimulates GLUT4 to move from the intracellular surface to the outer surface. In a similar fashion, TUG retains GLUT4 within unstimulated cells, but when insulin is secreted it causes GLUT4 to dissociate and so GLUT4 moves to the cell surface. TUG binds directly and ...
A splint is lit and held near the opening of the tube, then the stopper is removed to expose the splint to the gas. If the gas is flammable, the mixture ignites. [1] This test is most commonly used to identify hydrogen, which results with a distinctive 'squeaky pop' sound. [2]