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1 ly characterized in yeast as a high affinity hexose transporter.
2 n the ER to promote the secretion of certain hexose transporters.
3 easing the expression of mycorrhizal-induced hexose transporters.
4 the competitive binding of the two sugars to hexose transporters.
5 ered the S. cerevisiae mutant lacking all 20 hexose transporters a high glucose uptake activity, demo
8 SGB1 is shown here to be a Golgi-localized hexose transporter and acts genetically with AGB1 in ear
9 lucose gradients using fluorescently labeled hexose transporters and quantified the spatial correlati
11 criptional regulators CgMig1 and CgRgt1, and hexose transporter CgHxt2/10 in the Cgyps1-11Delta mutan
12 for in vivo inhibition of GLUT3 expressed in hexose transporter-deficient yeast cells, resulting in s
13 odel of GLUT2 and glucose uptake assays in a hexose transporter-deficient yeast strain, in which the
14 ling pathways converge onto Csr2 to regulate hexose transporter endocytosis by glucose availability.
15 ion, none imported sucrose, and 11 increased hexose transporter expression, a strategy we had not eng
16 ific to Pho84p, because other members of the hexose transporter family to which Pho84 belongs are not
17 These results underscore the importance of hexose transporters for the infectious stage of the para
18 According to a homology model of the yeast hexose transporter Gal2 deduced from the crystal structu
20 g glucose or with low levels of glucose, the hexose transporter genes are subject to repression by a
22 and hexoses by directly interacting with the hexose transporter GLUT1 and interfering with its transp
30 ts are consistent with the regulation of the hexose transporter (HXT) genes being approximately bipar
31 isiae, glucose induces the expression of the hexose transporter (HXT) genes by modulating the activit
33 uired for induction of expression of several hexose transporter (HXT) genes, encoding glucose transpo
37 the GAL regulatory network, Gal80p, and the hexose transporters, HXT, as the main sources of the bim
38 confirmed a single amino acid change in the hexose transporter HXT7 coding sequence to be responsibl
40 as well as unveiling the expression of this hexose transporter in mosquito stages of the parasite, w
42 ukaryotic SWEETs and identification of SWEET hexose transporters in the amphibian chytrid pathogen Ba
43 ose repression (reg1, glc7, hxk2, and ssn6), hexose transporter induction (snf3 rgt2), and cAMP-depen
46 hese methods, examples of porins, connexins, hexose transporters, nuclear membrane proteins, and pota
47 lasmodium spp., we functionally analysed the hexose transporters of both the human parasite P. falcip
48 chromosome 4 that includes the high-affinity hexose transporters; one of these also had the aforement
49 dent malaria parasite orthologue, P. berghei hexose transporter (PbHT) gene, was similarly refractory
51 bohydrate metabolism, we observed changes in hexose transporter, plasma membrane H(+)-ATPase, ZmMADS1
52 s have amplified the gene for an alternative hexose transporter, the LmGT4 permease (previously calle
53 ose induces expression of HXT genes encoding hexose transporters through a signal generated by the Sn
54 by integrating the gene encoding a chimeric hexose transporter, Tm6*, into the genome of an hxt null
56 cellular flux of substrates through GLUT1, a hexose transporter universally expressed in cells, and i
57 ogens and the wheat (Triticum aestivum) Lr67 hexose transporter variant (Lr67res) fits into this cate
59 most of which are conserved among eukaryotic hexose transporters, were revealed to be essential for g
60 fructose is carried out by the facilitative hexose transporter, which has been designated as GLUT5.