GLUT1

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Several types of GLUT1 inhibitors exist, one being [https://en.wikipedia.org/wiki/Cytochalasin_B cytochalasin b]. Two Trp residues, Trp388 and Trp412, are thought to play a major role in <scene name='91/910668/Glut1_cytochalasin_b_1/1'>cytochalasin b binding to GLUT1</scene> via hydrophobic interactions.<ref>PMID:7078104</ref>
Several types of GLUT1 inhibitors exist, one being [https://en.wikipedia.org/wiki/Cytochalasin_B cytochalasin b]. Two Trp residues, Trp388 and Trp412, are thought to play a major role in <scene name='91/910668/Glut1_cytochalasin_b_1/1'>cytochalasin b binding to GLUT1</scene> via hydrophobic interactions.<ref>PMID:7078104</ref>
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There is at least one known amino acid substitution in GLUT1 that can cause GLUT1 deficiency syndrome. <scene name='91/910668/Glut1_arg126_1/1'>Arg126</scene> causes transmembrane helix #4 to become kinked, blocking substrate transport. Arg126 is the amino acid most often mutated in GLUT1 deficiency syndrome.<ref>PMID:18387950</ref>
== References ==
== References ==
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<references/>

Revision as of 00:36, 3 May 2022

Facilitated Glucose Transporter 1, Solute Carrier Family 2, Homo sapiens

Crystal structure 4PYP from PDB

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Adam Kingsley, Michal Harel

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