首页> 美国卫生研究院文献>Biochemical Journal >Photolabelling of the liver-type glucose-transporter isoform GLUT2 with an azitrifluoroethylbenzoyl-substituted bis-D-mannose.
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Photolabelling of the liver-type glucose-transporter isoform GLUT2 with an azitrifluoroethylbenzoyl-substituted bis-D-mannose.

机译:肝型葡萄糖转运蛋白同工型GLUT2的光标记是用三氟乙基苯甲酰基取代的双D-甘露糖。

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摘要

The bis-D-mannose photolabel ATB-BMPA (2-N-[4-(1-azi-2,2,2- trifluoroethyl)benzoyl]-1,3-bis-(D-mannos-4-yloxy) propyl-2-amine) has been used to radiolabel the glucose transporter present in liver plasma membranes. The labelling was inhibited by 4,6-O-ethylidene-D-glucose. Approx. 7% of the liver plasma-membrane protein that was photolabelled in a 4,6-O-ethylidene-D-glucose-inhibitable manner was specifically immunoprecipitated by either an anti-(GLUT2 C-terminal peptide) antibody or by an anti-(GLUT2 exofacial-loop peptide) antibody. After correction for non-specific labelling and precipitation, the ratio of immunoprecipitable GLUT2 to GLUT1 was approximately 5:1, suggesting that GLUT1 was not a major component of liver plasma membranes. The low levels of immunoprecipitation of the photolabelled transporter may be due to low antibody affinity for GLUT2 or may indicate that the photolabelling reagent has labelled another glucose-transporter-like protein. The hexose-transport inhibitors phloretin, cytochalasin B and 4,6-O-ethylidene-D-glucose all inhibited the photolabelling by ATB-BMPA of immunoprecipitable GLUT2. D-Glucose inhibited approx. 57% of the ATB-BMPA labelling of GLUT2. D-Fructose also inhibited the GLUT2 labelling confirming that it is a substrate for GLUT2 [Gould, Thomas, Jess & Bell (1991) Biochemistry 30, 5139-5145]. From photolabel displacement by a range of concentrations of non-labelled ATB-BMPA, the affinity constant (Kd) of ATB-BMPA was found to be 250 +/- 78 microM, whereas the Bmax. (total number of binding sites) value was 2.1 +/- 0.29 pmol of GLUT2/mg of membrane protein. Since GLUT1, GLUT4 and GLUT2 have approximately equal affinities for the external ligand ATB-BMPA, but have widely varying affinities for equilibrated and transported substrates, it is suggested that the isoforms may differ in their ability to bind hexoses at the internal site.
机译:双-D-甘露糖光敏标签ATB-BMPA(2-N- [4-(1-azi-2,2,2-三氟乙基)苯甲酰基] -1,3-双-(D-甘露糖-4-基氧基)丙基(-2-胺)已用于放射性标记肝细胞质膜中存在的葡萄糖转运蛋白。标记被4,6-O-亚乙基-D-葡萄糖抑制。大约通过抗(GLUT2 C末端肽)抗体或抗(-)特异性免疫沉淀了以4,6-O-亚乙基-D-葡萄糖可抑制的方式进行光标记的7%的肝血浆膜蛋白。 GLUT2 exofacial-loop肽)抗体。校正了非特异性标记和沉淀后,可免疫沉淀的GLUT2与GLUT1的比例约为5:1,这表明GLUT1不是肝细胞膜的主要成分。光标记的转运蛋白的免疫沉淀水平低可能是由于对GLUT2的抗体亲和力低,或者可能表明光标记试剂已经标记了另一种葡萄糖转运蛋白样蛋白。己糖运输抑制剂phreretin,细胞松弛素B和4,6-O-亚乙基-D-葡萄糖均抑制了ATB-BMPA对可免疫沉淀的GLUT2的光标记。 D-葡萄糖抑制约。 GLUT2的ATB-BMPA标签的57%。 D-果糖还抑制了GLUT2标记,证实它是GLUT2的底物[Gould,Thomas,Jess&Bell(1991)Biochemistry 30,5139-5145]。根据一系列未标记的ATB-BMPA浓度的光标记位移,发现ATB-BMPA的亲和常数(Kd)为250 +/- 78 microM,而Bmax。 (结合位点总数)值为2.1 +/- 0.29pmol GLUT2 / mg膜蛋白。由于GLUT1,GLUT4和GLUT2对外部配体ATB-BMPA具有近似相等的亲和力,但对平衡和转运的底物具有广泛不同的亲和力,因此建议同工型在内部位点结合己糖的能力可能有所不同。

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