Biology of Human Sodium Glucose Transporters
Биология натрий-глюкозных котранспортеров человека
2011-04-01
SCID: 54.1/fc4vra4v
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SGLT1SLC5 gene familyfamilial renal glycosuriaglucose-galactose malabsorptionsodium-glucose cotransporters
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Abstract (AI)
There are two classes of glucose transporters involved in glucose homeostasis in the body, the facilitated transporters or uniporters (GLUTs) and the active transporters or symporters (SGLTs). The energy for active glucose transport is provided by the sodium gradient across the cell membrane, the Na(+) glucose cotransport hypothesis first proposed in 1960 by Crane. Since the cloning of SGLT1 in 1987, there have been advances in the genetics, molecular biology, biochemistry, biophysics, and structure of SGLTs. There are 12 members of the human SGLT (SLC5) gene family, including cotransporters for sugars, anions, vitamins, and short-chain fatty acids. Here we give a personal review of these advances. The SGLTs belong to a structural class of membrane proteins from unrelated gene families of antiporters and Na(+) and H(+) symporters. This class shares a common atomic architecture and a common transport mechanism. SGLTs also function as water and urea channels, glucose sensors, and coupled-water and urea transporters. We also discuss the physiology and pathophysiology of SGLTs, e.g., glucose galactose malabsorption and familial renal glycosuria, and briefly report on targeting of SGLTs for new therapies for diabetes.
Key Findings
1
Beyond solute cotransport, SGLTs function as water and urea channels, glucose sensors, and coupled water–urea transporters.
2
Human glucose homeostasis involves facilitated GLUT uniporters and sodium-gradient-driven SGLT symporters, based on the Na⁺-glucose cotransport mechanism.
3
SGLT dysfunction is implicated in glucose-galactose malabsorption and familial renal glycosuria, while SGLT targeting offers therapeutic opportunities for diabetes.
4
SGLTs share a common atomic architecture and transport mechanism with structurally related antiporters and Na⁺/H⁺ symporters from unrelated gene families.
5
The human SGLT (SLC5) gene family contains 12 members transporting sugars, anions, vitamins, and short-chain fatty acids.
Research Object
human sodium-glucose transporters (SGLTs; SLC5 gene family)
Research Subject
the molecular structure, transport mechanisms, physiological and pathophysiological functions, and therapeutic targeting of SGLTs
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2011-04-01
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