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Functional properties and genomics of glucose transportersA glucose sensor hiding in a family of transportersAquaporins and Brain TumorsMolecular pathophysiology of cerebral edemaDoes apical membrane GLUT2 have a role in intestinal glucose uptake?Bidirectional water fluxes and specificity for small hydrophilic molecules in aquaporins 0-5Renal Na(+)-glucose cotransportersEvidence against a role of mouse, rat, and two cloned human t1alpha isoforms as a water channel or a regulator of aquaporin-type water channelsTransient formation of water-conducting states in membrane transportersWater transport by the human Na+-coupled glutamate cotransporter expressed in Xenopus oocytesMapping the urea channel through the rabbit Na(+)-glucose cotransporter SGLT1Isotonic transport by the Na+-glucose cotransporter SGLT1 from humans and rabbitThe protein kinase C activator phorbol myristate acetate decreases brain edema by aquaporin 4 downregulation after middle cerebral artery occlusion in the ratLocalization of brain endothelial luminal and abluminal transporters with immunogold electron microscopyAquaporin water channels in gastrointestinal physiology.The role of fnx1, a fission yeast multidrug resistance protein, in the transition of cells to a quiescent G0 state.Direct inhibitory effect of rotavirus NSP4(114-135) peptide on the Na(+)-D-glucose symporter of rabbit intestinal brush border membraneWater and ion permeation of aquaporin-1 in planar lipid bilayers. Major differences in structural determinants and stoichiometry.The Escherichia coli aquaporin-Z water channel.Routes of epithelial water flow: aquaporins versus cotransporters.Glucose accumulation can account for the initial water flux triggered by Na+/glucose cotransport.Electrolyte transport in the mammalian colon: mechanisms and implications for disease.Gastrointestinal and renal responses to water intake in the green-backed firecrown (Sephanoides sephanoides), a South American hummingbird.Water pumps.Analysis of the sodium recirculation theory of solute-coupled water transport in small intestine.Aquaporins: a water channel family.Local osmotic gradients drive the water flux associated with Na(+)/glucose cotransport.The structural pathway for water permeation through sodium-glucose cotransportersSimulations of the alternating access mechanism of the sodium symporter Mhp1.Low TGFβ1 expression prevents and high expression exacerbates diabetic nephropathy in mice.Rotavirus infection stimulates the Cl- reabsorption process across the intestinal brush-border membrane of young rabbits.Epithelial water absorption: osmosis or cotransport?The mechanism of water transport in Na+-coupled glucose transporters expressed in Xenopus oocytesDefective proximal tubular fluid reabsorption in transgenic aquaporin-1 null miceStress alters the expression of aquaporins in cultured rat intestinal epithelial cells.Colon water transport in transgenic mice lacking aquaporin-4 water channels.Conformational changes couple Na+ and glucose transportTransforming growth factor-β1 and diabetic nephropathyThe Sodium Glucose Cotransporter SGLT1 Is an Extremely Efficient Facilitator of Passive Water TransportDefining the transcriptional regulation of the intestinal sodium-glucose cotransporter using RNA-interference mediated gene silencing.
P2860
Q24651540-25962E2D-292A-4786-9E33-F3BF3B24957FQ24672895-36A517C9-D811-4910-916F-838B739C2102Q26745578-EE20FB0F-B710-4972-A3B2-DB91A27D93FCQ26776371-E2DE1462-1545-473A-953F-B408B94DF8F2Q27023552-81D4DF63-921F-4471-BBCD-CB9C6E74840FQ28117298-89CBD844-B688-45A9-B756-491BD86552E9Q28141135-40DFECE2-BF2C-4BDF-9B37-109F48E7574FQ28275357-A1E13542-BFA7-47E4-BF11-F6215A757D2AQ28289441-69731A42-852B-4008-A2E8-B5A7C2A91E18Q28346060-C5E1C881-5041-4CFB-B78F-DB1092F353CBQ28348760-58C16AD4-51B5-4E88-8488-99C42C656BA5Q28360306-281E86D1-2E5F-40D1-953A-6AF35F615DF9Q33510783-61B61445-4CD2-498C-8916-CD61B488851CQ33569245-81E83686-1AED-469F-9387-94A06144018DQ33637387-E09F9E0D-7EC0-4183-ABEC-74599FEF9183Q33777977-5A5C2347-38C0-485E-8B33-BCA3F3571EE2Q33811421-015766D9-6D8A-4DFB-BAE8-9AA19C0191D8Q33951809-8982E6FF-D212-4421-9C04-8517DBA354D9Q33994556-20BD1467-1588-4CD0-BDF3-43B41B9C51A0Q34152099-48315CF8-2776-48EF-8739-8E6D8079F34EQ34184227-BC725907-84F5-4633-B37F-6C0C046A8F8CQ34482550-443FE005-1791-46E5-9D8F-F25978F7EF02Q34513769-CE3413F8-0274-4D27-BDB7-E7BB6A8919CDQ34524935-DF1ECCC1-E2DD-4C02-B9D0-05FFCEFCCB60Q34719816-0D6071A0-6859-4504-BE66-99BD433014C5Q34989868-F5F5EA59-292C-40D1-AA93-0A680186D98DQ35039775-1834B66B-F387-4108-9647-2A08DAB4F935Q35342488-7AD24C5F-EF55-4B21-91A5-E707A84F0213Q35556383-9BEDC86E-3B9F-42E2-81F4-656D67DA7CB6Q35590254-B516477A-3F05-4D34-8B14-4A0936E40B8CQ35803219-49297DE6-977C-4C50-AB20-5FBAC37B3D66Q35904995-85A6ED06-30FD-41D5-82EC-FFD508FCC453Q35906183-3F592054-059F-47F8-AF7E-C7AA9AD989EAQ36272820-153045DE-A53E-4760-B753-B96FEC2CDF1EQ36334227-7A4731F6-0FBB-42BB-A56D-E53E6DF49FFBQ36390439-C845EA3F-5BB8-42D1-B071-542E7D418C12Q36510722-6C2B6822-DDB8-4EC3-82FE-311916BBA671Q36810701-9792EC6A-9971-4416-8389-28AC7A747962Q36850065-0A7C4669-B6ED-43A7-8AB8-2D9E10A97BA7Q36959097-0C2AE792-CB06-458D-A046-87BA9D55BF28
P2860
description
1996 nî lūn-bûn
@nan
1996 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
1996 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
1996年の論文
@ja
1996年論文
@yue
1996年論文
@zh-hant
1996年論文
@zh-hk
1996年論文
@zh-mo
1996年論文
@zh-tw
1996年论文
@wuu
name
Cotransport of water by the Na+/glucose cotransporter.
@ast
Cotransport of water by the Na+/glucose cotransporter.
@en
Cotransport of water by the Na+/glucose cotransporter.
@nl
type
label
Cotransport of water by the Na+/glucose cotransporter.
@ast
Cotransport of water by the Na+/glucose cotransporter.
@en
Cotransport of water by the Na+/glucose cotransporter.
@nl
prefLabel
Cotransport of water by the Na+/glucose cotransporter.
@ast
Cotransport of water by the Na+/glucose cotransporter.
@en
Cotransport of water by the Na+/glucose cotransporter.
@nl
P2093
P2860
P356
P1476
Cotransport of water by the Na+/glucose cotransporter.
@en
P2093
P2860
P304
13367-13370
P356
10.1073/PNAS.93.23.13367
P407
P577
1996-11-01T00:00:00Z