• 제목/요약/키워드: Glut4

검색결과 182건 처리시간 0.029초

후코이단의 3T3-L1 지방세포에서 PI3K/AMPK 경로를 통한 포도당 흡수 촉진 및 인슐린 민감성 증진 효과 (Fucoidan Stimulates Glucose Uptake via the PI3K/AMPK Pathway and Increases Insulin Sensitivity in 3T3-L1 Adipocytes)

  • 이지희;박재은;한지숙
    • 생명과학회지
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    • 제31권1호
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    • pp.1-9
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    • 2021
  • 본 연구는 갈조류 유래 물질인 후코이단이 인슐린 민감성을 증진시키는지를 규명하기 위하여 3T3-L1 지방세포에서 포도당 흡수에 미치는 후코이단의 영향을 측정하고 그 작용기전을 조사하였다. 후코이단은 지방세포에서 포도당 흡수를 유의하게 증가시켰으며 이는 PM-GLUT4의 발현 증가와 관련이 있음을 관찰하였다. 후코이단은 인슐린 신호전달 경로에서 PI3K의 활성화 및 pIRS1tyr, Akt, PKCλ/ζ의 인산화를 대조군에 비해 유의하게 증가시켰다. 또한, AMPK의 활성화를 나타내는 pAMPK 수준이 유의하게 증가하였다. 이들 PI3K 및 AMPK 활성화는 포도당 수송체인 GLUT4를 세포막으로 이동시켰으며 이로 인하여 PM-GLUT4의 발현이 증가되고 포도당 흡수가 촉진되었다. 후코이단에 의한 PI3K 및 AMPK 경로의 활성화를 증명하기 위해, PI3K 억제제인 Wortmannin과 AMPK의 억제제인 Compound C를 사용하여 이들 처리에 의한 포도당 흡수능과 PM-GLUT4의 발현을 측정한 결과 이들의 발현이 유의하게 저해되었다. 따라서 후코이단은 3T3-L1 지방세포에서 PI3K 및 AMPK 경로를 활성화시킴으로써 인슐린 민감성을 증진하고 포도당 흡수를 촉진시킬 수 있음을 나타내었다.

상엽 에탄올가용분획의 글루코스전달체, acetyl-CoA 카복시라제 및 렙틴 mRNA 발현에 미치는 영향 (Effects of Mori Folium Ethanol Soluble Fraction on mRNA Expression of glucose transporters, acetyl-CoA carboxylase and leptin)

  • 류정화;육창수;정성현
    • 약학회지
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    • 제42권6호
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    • pp.589-597
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    • 1998
  • Effects of Mori Folium Ethanol Soluble Fraction (MFESF) on mRNA expression of glucose transporters, acetyl-CoA carboxylase (ACC) and leptin were examined in db/db mice. 500 and 1000mg/kg dose for MFESF (designated by SY 500 and SY 1000, respectively) and 5mg/kg dose for acarbose were administered for 6 weeks. Quantitations of glucose transporters (GLUT-2 and GLUT-4), ACC and leptin mRNA were performed by RT-PCR and in vitro transcription with co-amplification of rat ${\beta}$-actin gene as an internal standard. Muscular GLUT-4 mRNA expression in MFESF-treated groups were increased dose dependently. On the other hand, MFESF caused the GLLT-4 and leptin mRNA expressions in adipose tissue to decrease dose dependently, which means that triglyceride synthesis in adipocytes might be decreased and consequently signals adipocytes to inhibit the synthesis and release of leptin. Hepatic ACC mRNA expression in MFESF-treated groups was also decreased. and this may result in lowering of serum triiglyceride level. In contrast, liver GLUT-2 mRNA expressions in MFESF-treated and acarbose groups were increased. Higher rate of glucose uptake into hepatocytes is known to inhibit a phosphoenolpyruvate carboxykinase (PEPCK)-catalyzed reaction, which is a rate-limiting step in gluconeogenesis.

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Effect of Ganglioside $G_{M3}$ on the Erythrocyte Glucose Transporter (GLUT1): Conformational Changes Measured by Steady-State and Time-Resolved Fluorescence Spectroscopy

  • Yoon, Hae-Jung;Lee, Min-Yung;Jhon, GiI-Ja
    • BMB Reports
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    • 제30권4호
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    • pp.240-245
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    • 1997
  • Interactions between ganglioside $G_{M3}$ and glucose transporter, GLUT1 were studied by measuring the effect of $G_{M3}$ on steady-state and time-resolved fluorescence of purified GLUT1 in synthetic lipids and on the 3-O-methylglucose uptake by human erythrocytes. The intrinsic tryptophan fluorescence showed a GLUT 1 emission maximum of 335 nm, and increased in the presence of $G_{M3}$ by 12% without shifting the emission maximum, The fluorescence lifetimes of intrinsic tryptophan on GLUT1 consisted of a long component of 7.8 ns and a short component of 2,3 ns and $G_{M3}$ increased both lifetime components. Lifetime components were quenched by acrylamide and KI. Acrylarnide-mduced quenching of long-lifetime components was partly recovered by $G_{M3}$ However. KI-induccd quenching of short- and long-lifetime components was not rescued by $G_{M3}$. The anisotropy of 1.6-diphenyl-1.3.5-hexatriene (DPH)-probed dimyristoylphosphatidylcholine (DMPC) model membrane was also increased with $G_{M3}$ incorporation, The transport rate of 3-O-methylglucose increased by 20% with $G_{M3}$ incorporation on the erythrocytes, Therefore, $G_{M3}$ altered the environment of lipid membrane and induced the conformational change of GLUT1.

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Cloning and Distribution of Facilitative Glucose Transporter 2 (SLC2A2) in Pigs

  • Zuo, Jianjun;Huang, Zhiyi;Zhi, Aimin;Zou, Shigeng;Zhou, Xiangyan;Dai, Fawen;Ye, Hui;Feng, Dingyuan
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권9호
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    • pp.1159-1165
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    • 2010
  • Glucose is the main energy source for mammalian cells and its absorption is co-mediated by two different families of glucose transporters, sodium/glucose co-transporters (SGLTs) and facilitative glucose transporters (GLUTs). Here, we report the cloning and tissue distribution of porcine GLUT2. The GLUT2 was cloned by RACE and its cDNA was 2,051 bp long (GenBank accession no. EF140874). An AAATAA consensus sequence at nucleotide positions 1936-1941 was located upstream of the poly $(A)^+$ tail. Open reading frame analysis suggested that porcine GLUT2 contained 524 amino acids, with molecular weight of 57 kDa. The amino acid sequence of porcine GLUT2 was 87% and 79.4% identical with human and mouse GLUT2, respectively. GLUT2 mRNA was detected at highest level in porcine liver, at moderate levels in the small intestine and kidney, and at low levels in the brain, lung, muscle and heart. In the small intestine, the highest level was in the jejunum. In conclusion, the mRNA expression of GLUT2 was not only differentially regulated by age, but also differentially distributed along the small intestine of piglets, which may be related to availability of different intestinal luminal substrate concentrations resulting from different food sources and digestibility.

Potential mechanism of anti-diabetic activity of Picrorhiza kurroa

  • Husain, Gulam Mohammed;Rai, Richa;Rai, Geeta;Singh, Harikesh Bahadur;Thakur, Ajit Kumar;Kumar, Vikas
    • 셀메드
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    • 제4권4호
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    • pp.27.1-27.5
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    • 2014
  • Picrorhiza kurroa Royle ex Benth. (Scrophulariaceae) is a traditional Ayurvedic herb known as Kutki. It is used as a remedy for diabetes by tribes of North Eastern Himalayan region of India. Present study was conducted to explore the mechanism of antidiabetic activity of standardized aqueous extract of Picrorhiza kurroa (PkE). PkE (100 and 200 mg/kg/day) was orally administered to streptozotocin induced diabetic rats, for 14 consecutive days. Plasma insulin levels were measured and pancreas of rat was subjected to histopathological investigations. Glucose transporter type 4 (GLUT-4) protein content in the total membrane fractions of soleus muscle was estimated by Western blot analysis. Plasma insulin level was significantly increased along with concomitant increase in GLUT-4 content of total membrane fractions of soleus muscle of diabetic rats treated with extract. There was evidence of regeneration of ${\beta}$-cells of pancreatic islets of PkE treated group in histopathological examinations. PkE increased the insulin-mediated translocation of GLUT-4 from cytosol to plasma membrane or increased GLUT-4 expression, which in turn facilitated glucose uptake by skeletal muscles in diabetic rats.

항당뇨 물질 Aloe QDM complex의 세포내 포도당 흡수촉진 효능 (Effects of Antidiabetic Agent, Aloe QDM complex, on Intracellular Glucose Uptake)

  • 임선아;김기향;신은주;도선길;조태형;박영인;이종길
    • 생약학회지
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    • 제44권1호
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    • pp.75-82
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    • 2013
  • Previous studies have shown that Aloe QDM complex, which is consisted of chromium (Cr), aloesin (ALS) and processed Aloe vera gel (PAG), exert antidiabetic activity in a high fat diet-induced mouse model of type 2 diabetes. In this study we examined the mechanism of the antidiabetic activity of the Aloe QDM complex. Rat myoblast cell line L6 cells were cultured in the presence of Cr, ALS, and PAG alone and in combinations, and then the capability of the cells to uptake glucose was examined using radiolabeled glucose. All of the 3 agents, Cr, ALS and PAG, exerted glucose uptake-enhancing activity in L6 cells. The most potent capability to uptake glucose was observed when L6 cells were cultured with the Aloe QDM complex. The activity of the Aloe QDM complex to enhance glucose uptake was prominent in conditions where existing insulin concentrations are low. We also examined the effects of the Aloe QDM complex on the plasma membrane expression of GLUT4 in L6 cells. The Aloe QDM complex increased the content of GLUT4 in the plasma membrane, while decreasing the content of GLUT4 in the light microsome. Taken together, these results show that the antidiabetic activity of the Aloe QDM complex is at least in part due to the stimulation of glucose uptake into the muscle cells, and this activity of the Aloe QDM complex is mediated through the enhancement of the translocation of GLUT4 into the plasma membrane.

다양한 사람 종양세포주에서 F-18-FDG의 섭취와 Hexokinase 활성 및 Glut-1 발현과의 상관관계 (The Relationship between F-18-FDG Uptake, Hexokinase Activity and Glut-1 Expression in Various Human Cancer Cell Lines)

  • 김보광;정준기;이용진;최용운;정재민;이동수;이명철
    • 대한핵의학회지
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    • 제34권4호
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    • pp.294-302
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    • 2000
  • 목적: 종양세포에서 F-18-FDG 섭취 기전을 규명하기 위하여 F-18-FDG 섭취와 포도당운반체-1 (Glut-1), hexokinase의 발현과의 상관관계를 조사하였다. 대상 및 방법: 사람의 대장암(SNU-C2A, SNU-C4, SNU-C5), 간암(SNU-387, SNU-423, SNU-449), 폐암(NCI-H522, NCI-H358, NCI-H1299), 자궁경부암(HeLa, HeLa 229, HeLa S3), 그리고 뇌암(A172, Hs 683)에서 기원한 암 세포주 $5{\times}10^5$ 세포를 24 well plate에 24시간 배양하였다. 여기에 37 kBq의 F-18-FDG를 첨가한 후 각 세포의 섭취 정도를 감마 카운터를 사용하여 측정하였다. Hexokinase의 활성은 분광광도계를 사용하여 측정하였다. 디토콘드리아에서의 hexokinase 활성은 고속원심분리기를 이용하여 미토콘드리아 분획을 분리하여 조사하였다. Glut-1의 발현은 면역조직염색법으로 측정하였다. 결과: 종양세포의 종류에 따라 F-18-FDG 섭취, 전체 그리고 미토콘드리아 hexokinase 활성, 그리고 Glut-1의 발현 정도에 차이가 있었다. 종양세포주에서 F-18-FDG 섭취와 세포전체, 세포내 미토콘드리아 hexokinase 활성과의 상관관계(각각 r=0.27, r=0.26)는 낮게 나타났으며, Glut-1의 발현은 F-18-FDG의 섭취와 상관관계(p=0.81, p=0.0015)가 높았다. 대장암 세포주에서 F-18-FDG 섭취와 hexokinase 활성의 상관관계가 없다는 보고를 토대로 대장암 세포주 결과를 제외했을 경우에 F-18-FDG의 섭취와 세포전체 그리고 세포내 미토콘드리아에서의 hexokinase 활성과는 높은 상관관계(각각 r=0.81, p=0.0027, 그리고 r=0.81, p=0.0049)를 보였다. 결론: Glut-1이나 hexokinase 활성이 사람 종양 세포주에서 F-18-FDG의 섭취를 결정하는 주 요인이며, 종양세포의 종류에 따라 이들의 기여도는 서로 다름을 알 수 있었다.

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db/db 마우스에서 수풍순기환의 혈당강하 활성 및 기전연구 (Blood Glucose Lowering Activity and Mechanism of Supungsungihyan (SPSGH) in db/db Mouse)

  • 이성현;안세영;두호경;정성현
    • Biomolecules & Therapeutics
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    • 제7권4호
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    • pp.335-341
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    • 1999
  • Antidiabetic activity and mechanism of Supungsungihyan(SPSGH) were examined in db/db mice, which is a spontaneously hyperglycemic, hyperinsulinemic and obese animal model. SPSGH and acarbose were administered orally for 4 weeks. Fasting and non-fasting serum glucose, glycated hemoglobin and trig-lyceride of SPSGH treated group were all reduced when compared with those of db/db control group. At 12th week after birth, SPSGH increased an insulin secretion although statistic significance was not seen. Total activities of sucrose, maltase and lactase in SPSGH treated group were not significantly different from those in db/db control. On the other hand, sucrase and maltase activities in acarbose treated groups were increased. Effect of SPSGH on mRNA expression of glucose transporter(GLUT-4) was also examined by RT-PCR and in vitro transcription with co-amplification of rat $\beta$-actin gene as an internal standard. Muscular GLUT-4 mRNA expression in SPSGH treated group was increased significantly. These results may suggest that SPSGH lowered blood glucose ascribing to upregulation of muscular GLUT-4 mRNA expression.

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상백피탕(桑白皮湯)과 수풍순기환(搜風順氣丸)이 db/db Mice의 당대사(糖代謝)에 미치는 영향(影響) (A Study on the Effect of Sangbaegpitang & Supungsungiwhan on the Glucose Metabolism of db/db Mice)

  • 이성현;안세영;두호경
    • 대한한의학회지
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    • 제20권2호
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    • pp.108-120
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    • 1999
  • In this study, body weight levels of glucose, insulin and triglyceride in blood and glucosidase activity of the small intestine were investigated to determine the effect of Sangbaegpitang and Supungsungiwhan on the glucose metabolism of db/db mice. The GLUT4 mRNA of muscle tissue and the Acetyl CoA Carboxylase and the activation rate of GLUT2 mRNA of liver tissue were measured by the reverse transcription-polymerase chain reaction method and by the vitro transcription. The results were obtained as follows: 1. In the Sangbaegpitang administration group, (1) The level of triglyceride was decreased significantly and the glucosidase activity of the small intestine was inhibited remarkably, (2) The amounts of the GLUT4 mRNA in muscle tissue and Acetyl CoA Carboxylase mRNA in liver tissue were increased significantly. (3) Though glucose level in both fasting and non-fasting, were decreased and the insulin level in blood was increased, the results showed no statistical significance. 2. In the Supungsungiwhan administration group, (1) The levels of glucose and triglyceride were decreased significantly in the blood of non-fasting animals. (2) The glucosidase activity of small intestine was inhibited markedly and the amounts of GLUT4 mRNA of muscle tissue and GLUT2 mRNA of liver tissue were increased significantly. (3) The glucose levels in the fasting group were reduced, while insulin level was increased but showed no statistical significance, Based on the above results, our conclusions are as follows: Sangbaegpitang & Supungsungiwhan are thought to be capable of inhibiting the activity glucosidase, the enzyme which influences carbohydrate metabolism in the small intestine of db/db mice(the experimental diabetic model) and delaying the absorption of carbohydrate, thus proving effective on inhibiting the increase of non-fasting glucose level effectively. Futhermore Sangbaegpitang and Supungsungiwhan are though: to be capable of preventing the composition of free fatty acids by restoring the production of GLUT4 mRNA of muscle tissues and GLUT2 mRNA of liver tissues. Those results suggests that above prescriptions can be applied to non-insulin dependent diabetes mellitus in order to improve insulin resistance.

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A Probing of Inhibition Effect on Specific Interaction Between Glucose Ligand Carrying Polymer and HepG2 Cells

  • Park, Keun-Hong;Park, Sang-Hyug;Lee, Hyun-Jung;Min, Byoung-Hyun
    • Journal of Microbiology and Biotechnology
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    • 제14권3호
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    • pp.450-455
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    • 2004
  • A reducing glucose-carrying polymer, called poly [3-O-(4'-vinylbenzyl)-D-glucose](PVG), was interacted with HepG2 cells including a type-l glucose transporter (GLUT-1) on the cell membrane. The cooperative interaction between a number of GLUT-1s and a number of reducing 3-O-methyl-D-glucose moieties on the PVG polymer chain was found to be responsible for the increase in the interaction with HepG2 cells. The affinity between the cells and the PVG was studied using RITC-labeled glycopolymers. The specific interaction between the GLUT-1 on HepG2 cells and the PVG polymer carrying reducing glucose moieties was suppressed by the inhibitors, phloretin, phloridzin, and cytochalasin B. Direct observation by confocal laser microscopy with the use of RITC-labeled PVG and pretreatment of HepG2 cells with the inhibitors demonstrated that the cells interacted with the soluble form of the PVG polymer via GLUT-1, while fluorescence labeling of the cell surface was prevented after pretreatment with the inhibitors of GLUT-1.