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931.
Ohno H Nakatsu Y Sakoda H Kushiyama A Ono H Fujishiro M Otani Y Okubo H Yoneda M Fukushima T Tsuchiya Y Kamata H Nishimura F Kurihara H Katagiri H Oka Y Asano T 《American journal of physiology. Cell physiology》2011,300(5):C1047-C1054
Glucose transporter 1 (GLUT1) is widely distributed throughout various tissues and contributes to insulin-independent basal glucose uptake. Using a split-ubiquitin membrane yeast two-hybrid system, we newly identified 4F2 heavy chain (4F2hc) as a membrane protein interacting with GLUT1. Though 4F2hc reportedly forms heterodimeric complexes between amino acid transporters, such as LAT1 and LAT2, and regulates amino acid uptake, we investigated the effects of 4F2hc on GLUT1 expression and the associated glucose uptake. First, FLAG-tagged 4F2hc and hemagglutinin-tagged GLUT1 were overexpressed in human embryonic kidney 293 cells and their association was confirmed by coimmunoprecipitation. The green fluorescent protein-tagged 4F2hc and DsRed-tagged GLUT1 showed significant, but incomplete, colocalization at the plasma membrane. In addition, an endogenous association between GLUT1 and 4F2hc was demonstrated using mouse brain tissue and HeLa cells. Interestingly, overexpression of 4F2hc increased the amount of GLUT1 protein in HeLa and HepG2 cells with increased glucose uptake. In contrast, small interfering RNA (siRNA)-mediated 4F2hc gene suppression markedly reduced GLUT1 protein in both cell types, with reduced glucose uptake. While GLUT1 mRNA levels were not affected by overexpression or gene silencing of 4F2hc, GLUT1 degradation after the addition of cycloheximide was significantly suppressed by 4F2hc overexpression and increased by 4F2hc siRNA treatment. Taken together, these observations indicate that 4F2hc is likely to be involved in GLUT1 stabilization and to contribute to the regulation of not only amino acid but also glucose metabolism. 相似文献
932.
933.
934.
The cuticle deposition rhythm, which is observed in the apodeme of the furca in the thorax, is controlled by a peripheral circadian clock in the epidermal cells and entrained to light-dark (LD) cycles via CRYPTOCHROME (CRY) in Drosophila melanogaster. In the present study, we examined the effects of temperature (TC) cycles and the combination of LD and TC cycles on entrainment of the cuticle deposition rhythm. The rhythm was entrained to TC cycles, whose period was 28 h. In T = 21 and 24 h, the rhythm was entrained to TC cycles in some individuals. CRY is not necessary for temperature entrainment of the cuticle deposition rhythm because the rhythm in cry(b) (lacking functional CRY) was entrained to TC cycles. Temperature entrainment of the rhythm was achieved even when the thoraxes or furcae were cultured in vitro, suggesting that the mechanism for temperature entrainment is independent of the central clock in the brain and the site of the thermoreception resides in the epidermal cells. When LD and TC cycles with different periods were applied, the rhythm was entrained to LD cycles with a slight influence of TC cycles. Thus, the LD cycle is a stronger zeitgeber than the TC cycle. The variance of the number of the cuticle layers decreased in the flies kept under LD and TC cycles with the same period in which the thermophase coincided with the photophase. Therefore, we conclude that LD and TC cycles synergistically entrain the rhythm. Synergistic effects of LD and TC cycles on entrainment were also observed even when the thoraxes were cultured in vitro, suggesting that the light and temperature information is integrated within the peripheral circadian system. 相似文献
935.
936.
The Arabidopsis tandem zinc finger protein AtTZF1 affects ABA- and GA-mediated growth, stress and gene expression responses 总被引:1,自引:0,他引:1
Lin PC Pomeranz MC Jikumaru Y Kang SG Hah C Fujioka S Kamiya Y Jang JC 《The Plant journal : for cell and molecular biology》2011,65(2):253-268
Tandem zinc finger (TZF) proteins are characterized by two zinc-binding CCCH motifs arranged in tandem. Human TZFs such as tristetraproline (TTP) bind to and trigger the degradation of mRNAs encoding cytokines and various regulators. Although the molecular functions of plant TZFs are unknown, recent genetic studies have revealed roles in hormone-mediated growth and environmental responses, as well as in the regulation of gene expression. Here we show that expression of AtTZF1 (AtCTH/AtC3H23) mRNA is repressed by a hexokinase-dependent sugar signaling pathway. However, AtTZF1 acts as a positive regulator of ABA/sugar responses and a negative regulator of GA responses, at least in part by modulating gene expression. RNAi of AtTZF1-3 caused early germination and slightly stress-sensitive phenotypes, whereas plants over-expressing AtTZF1 were compact, late flowering and stress-tolerant. The developmental phenotypes of plants over-expressing AtTZF1 were only partially rescued by exogenous application of GA, implying a reduction in the GA response or defects in other mechanisms. Likewise, the enhanced cold and drought tolerance of plants over-expressing AtTZF1 were not associated with increased ABA accumulation, suggesting that it is mainly ABA responses that are affected. Consistent with this notion, microarray analysis showed that over-expression of AtTZF1 mimics the effects of ABA or GA deficiency on gene expression. Notably, a gene network centered on a GA-inducible and ABA/sugar-repressible putative peptide hormone encoded by GASA6 was severely repressed by AtTZF1 over-expression. Hence AtTZF1 may serve as a regulator connecting sugar, ABA, GA and peptide hormone responses. 相似文献
937.
Ishida Y Shibata Y Fukuhara I Yano Y Takehara I Kaneko K 《Bioscience, biotechnology, and biochemistry》2011,75(3):427-433
A double-blind, placebo-controlled, randomized clinical trial was conducted to evaluate the effects of ingesting an excess of tablets containing casein hydrolysate, incorporating angiotensin I-converting enzyme (ACE) inhibitory peptides such as Val-Pro-Pro (VPP) and Ile-Pro-Pro (IPP), in subjects with blood pressure ranging from normal to mild hypertension. A total of 48 subjects were given either 5 times more than the effective amount of casein hydrolysate or a placebo in tablet form for 4 weeks. In the active group, systolic blood pressure (SBP) decreased significantly as compared with the placebo group. In stratified analysis, however, this antihypertensive effect was not found in normotensive subjects. In addition, neither an acute or nor an excessive reduction in blood pressure nor clinically important adverse events were observed in this study. These findings suggest that intake of a 5-fold excess of tablets containing casein hydrolysate can lead to a mild improvement in hypertension without side effects. 相似文献
938.
Katsumata T Fukazawa J Magome H Jikumaru Y Kamiya Y Natsume M Kawaide H Yamaguchi S 《Bioscience, biotechnology, and biochemistry》2011,75(2):331-336
CYP78 is a plant-specific family of cytochrome P450 monooxygenases, some members of which regulate the plastochron length and organ size in angiosperms. The CYP78 family appears to be highly conserved in land plants, but there have been no reports on the role of CYP78s in bryophytes. The moss, Physcomitrella patens, possesses two CYP78As, CYP78A27 and CYP78A28. We produced single and double mutants and overexpression lines for CYP78A27 and CYP78A28 by gene targeting to investigate the function of CYP78As in P. patens. Neither the cyp78a27 nor cyp78a28 single mutant showed any obvious phenotype, while the double mutant exhibited severely retarded protonemal growth and gametophore development. The endogenous levels of some plant hormones were also altered in the double mutant. Transgenic lines that overexpressed CYP78A27 or CYP78A28 showed delayed and reduced bud formation. Our results suggest that CYP78As participate in the synthesis of a critical growth regulator in P. patens. 相似文献
939.
Hiramatsu Y Hosono A Konno T Nakanishi Y Muto M Suyama A Hachimura S Sato R Takahashi K Kaminogawa S 《Cytotechnology》2011,63(3):307-317
We have investigated the immunomodulatory mechanisms of Bifidobacterium pseudocatenulatum JCM7041 (Bp) as model of probiotics following oral administration to mice. This study was conducted with the aim of clarifying
the mechanism of immunomodulation induced by oral administration of probiotic bacteria through elucidation of the detailed
mechanism of transfer of orally administered bacterial cells within the body and the interaction between bacterial cells and
cells of the immune tissues. We observed the localization of Bp in mice following oral administration, showing that Bp was
surrounded by CD11c+ cells in Peyer’s patches (PP) and cecal patches (CP). These results indicated that Bp might induce CD11c+ cell-mediated immune responses directly. Furthermore, IL-10 and IL-12p40 production by Thy1.2− cells, including CD11c+ cells, increased significantly. Production of IL-10 and IL-12p40 by bone marrow-derived dendritic cells (BMDC) was significantly
increased by Bp stimulation. These results suggest that oral administration of Bp induces immune responses directly following
capture by CD11c+ dendritic cells (DCs). Subsequently, we observed oral administration of Bp for 1 week induced IgA and IgA-associated cytokine
production by CP and PP cells, suggesting that Bp induced DC-mediated immune responses on CP as well as PP. 相似文献
940.
Watanabe K Tomioka S Tanimura K Oku H Isoi K 《Bioscience, biotechnology, and biochemistry》2011,75(1):7-12
The uptake activity ratio for AMP, ADP, and ATP in mutant (T-1) cells of Escherichia coli W, deficient in de novo purine biosynthesis at a point between IMP and 5-aminoimidazole-4-carboxiamide-1-β-D-ribofuranoside (AICAR), was 1:0.43:0.19. This ratio was approximately equal to the 5'-nucleotidase activity ratio in E. coli W cells. The order of inhibitory effect on [2-3H]ADP uptake by T-1 cells was adenine > adenosine > AMP > ATP. About 2-fold more radioactive purine bases than purine nucleosides were detected in the cytoplasm after 5 min in an experiment with [8-1?C]AMP and T-1 cells. Uptake of [2-3H]adenosine in T-1 cells was inhibited by inosine, but not in mutant (Ad-3) cells of E. coli W, which lacked adenosine deaminase and adenylosuccinate lyase. These experiments suggest that AMP, ADP, and ATP are converted mainly to adenine and hypoxanthine via adenosine and inosine before uptake into the cytoplasm by E. coli W cells. 相似文献