GLUT1

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====Diabetes and Pregnancy====
====Diabetes and Pregnancy====
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GLUT1 has been shown to be upregulated in the placental tissue of mothers with both pregestational and gestational diabetes, even when a patient's glycemic control is considered good. It is hypothesized that fetal hyperglycemia due to increased glucose transporter expression.<ref>PMID:10022440</ref>
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GLUT1 has been shown to be upregulated in the placental tissue of mothers with both pregestational and gestational diabetes, even when a patient's glycemic control is considered good. It is hypothesized that fetal hyperglycemia due to increased glucose transporter expression may increase the risk of offspring developing type I ''or'' type II diabetes.<ref>PMID:10022440</ref>
====Diabetic Retinopathy====
====Diabetic Retinopathy====
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== Structural highlights ==
== Structural highlights ==
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The GLUT1 transporter has one known <scene name='91/910668/Glut1_n-glycosylation/1'>N-linked glycosylation</scene> site at Asn 45. Varied molecular weights of the GLUT1 transporter suggest glycosylation is dependent on cell type. This glycosylation site is thought to be important for increasing glucose binding to the extracellular portion of the transporter. Mutations in the GLUT1 transporter from Asn 45 to an Asp, Tyr, or Gln residue have been shown to increase the Km of the enzyme.<ref>PMID:1761560</ref>
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The GLUT1 transporter has one known <scene name='91/910668/Glut1_n-glycosylation/1'>N-linked glycosylation</scene> site at Asn 45. Varied molecular weights of the GLUT1 transporter suggest glycosylation is dependent on cell type. This glycosylation site is thought to be important for increasing glucose binding to the extracellular portion of the transporter. Mutations in the GLUT1 transporter from Asn 45 to an Asp, Tyr, or Gln residue have been shown to increase the Km of the enzyme.<ref>PMID:1761560</ref> In addition, samples of both bovine capillaries and choroid plexus cells show differences in GLUT1 molecular weight attributable to N-linked glycosylation.<ref>PMID:8038191</ref> This evidence suggests that GLUT1 glycosylation may differ by tissue type to serve certain functions.
<scene name='91/910668/Glut1_default_view_charged/1'>GLUT1</scene> has a <scene name='91/910668/Glut1_hydrophobic_pocket/1'>hydrophobic pocket</scene> and is proposed to be comprised of <scene name='91/910668/Glut1_hps_2/1'>six amino acids</scene><scene name='91/910668/Glut1_hps_2/5'>(view 2)</scene>. In the structure [[4pyp]], these residues are Gly27, Thr30, Ile164, Val165, Ile168, and Phe291. This hydrophobic pocket has been proposed to facilitate substrate binding and unbinding between the "occluded" and "inward-open" conformations.<ref>PMID:27128978</ref> In this crystal structure, <scene name='91/910668/B-ng_in_4pyp/1'>N-nonyl-β-D-glucopyranoside (β-NG)</scene> acts as a glucose analog that binds the hydrophobic pocket.<ref>PMID:24847886</ref>
<scene name='91/910668/Glut1_default_view_charged/1'>GLUT1</scene> has a <scene name='91/910668/Glut1_hydrophobic_pocket/1'>hydrophobic pocket</scene> and is proposed to be comprised of <scene name='91/910668/Glut1_hps_2/1'>six amino acids</scene><scene name='91/910668/Glut1_hps_2/5'>(view 2)</scene>. In the structure [[4pyp]], these residues are Gly27, Thr30, Ile164, Val165, Ile168, and Phe291. This hydrophobic pocket has been proposed to facilitate substrate binding and unbinding between the "occluded" and "inward-open" conformations.<ref>PMID:27128978</ref> In this crystal structure, <scene name='91/910668/B-ng_in_4pyp/1'>N-nonyl-β-D-glucopyranoside (β-NG)</scene> acts as a glucose analog that binds the hydrophobic pocket.<ref>PMID:24847886</ref>

Revision as of 00:57, 3 May 2022

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

Crystal structure 4PYP from PDB

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Proteopedia Page Contributors and Editors (what is this?)

Adam Kingsley, Michal Harel

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