首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Binding and transcytosis of glycoalbumin by the microvascular endothelium of the murine myocardium: evidence that glycoalbumin behaves as a bifunctional ligand
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Binding and transcytosis of glycoalbumin by the microvascular endothelium of the murine myocardium: evidence that glycoalbumin behaves as a bifunctional ligand

机译:鼠心肌微血管内皮对糖白蛋白的结合和转运:证据表明糖白蛋白具有双功能配体的作用

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摘要

The binding and transport of glycoalbumin (gA) by the endothelium of murine myocardial microvessels were studied by perfusing in situ 125I- gA or gA-gold complexes (gA-Au) and examining the specimens by radioassays and EM, respectively. After a 3-min perfusion, the uptake of radioiodinated gA is 2.2-fold higher than that of native albumin; it is partially (approximately 55%) competed by either albumin or D- glucose, and almost completely abolished by the concomitant administration of both competitors or by gA. D-mannose and D-galactose are not effective competitors. Unlike albumin-gold complexes that bind restrictively to plasmalemmal vesicles, gA-Au labels the plasma-lemma proper, plasmalemmal vesicles open on the lumen, and most coated pits. Competing albumin prevents gA-Au binding to the membrane of plasmalemmal vesicles, while glucose significantly reduces the ligand binding to plasmalemma proper. Competition with albumin and glucose gives additive effects. Transcytosis of gA-Au, already detected at 3 min, becomes substantial by 30 min. No tracer exit via intercellular junctions was detected. gA-Au progressively accumulates in multivesicular bodies. The results of the binding and competition experiments indicate that the gA behaves as a bifunctional ligand which is recognized by two distinct binding sites: one, located on the plasma membrane, binds as a lectin the glucose residues of gA; whereas the other, confined to plasmalemmal vesicles, recognizes presumably specific domains of the albumin molecule.
机译:通过灌注125 I-gA或gA-金复合物(gA-Au)并分别通过放射分析和EM检查样本,研究了鼠心肌微血管内皮中糖蛋白(gA)的结合和转运。灌注3分钟后,放射性碘化gA的摄取比天然白蛋白高2.2倍;它部分地(约55%)被白蛋白或D-葡萄糖竞争,而同时给予两种竞争者或gA则几乎被全部废除。 D-甘露糖和D-半乳糖不是有效的竞争者。与白蛋白-金复合物限制性地结合到质膜囊泡上不同,gA-Au标记适当的质膜-内膜,质膜囊泡在管腔上开放,并且包被的凹坑最多。竞争性白蛋白可防止gA-Au结合至质膜囊泡膜,而葡萄糖则可显着降低配体与质膜结合的能力。与白蛋白和葡萄糖的竞争产生加和作用。已经在3分钟时检测到的gA-Au的胞吞作用在30分钟时变得明显。没有检测到示踪剂通过细胞间连接退出。 gA-Au逐渐积累在多囊泡体中。结合和竞争实验的结果表明,gA表现为双功能配体,可被两个不同的结合位点识别:一个位于质膜上,作为凝集素结合gA的葡萄糖残基;另一个位于凝集素上。而另一种局限于血浆囊泡中,则可以识别白蛋白分子的特定结构域。

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