首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Endocytosis of junctional cadherins in bovine kidney epithelial (MDBK) cells cultured in low Ca2+ ion medium
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Endocytosis of junctional cadherins in bovine kidney epithelial (MDBK) cells cultured in low Ca2+ ion medium

机译:在低Ca2 +离子培养基中培养的牛肾上皮(MDBK)细胞中连接钙黏着蛋白的内吞作用

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摘要

The release of intercellular contacts in MDBK cells, initiated by the depletion of Ca2+ ions from the culture medium, results in the endocytotic uptake of membrane vesicles containing specific membrane constituents of the zonula adhaerens (ZA). During this process the junction-derived, endocytosed vesicles remain associated with the ZA plaque components, while the plaque and its attached actin filaments retract as a whole in a ring-like fashion from the plasma membrane, often accumulating, usually in fragments, in the juxtanuclear cytoplasm. Double-label immunofluorescence microscopy with antiplakoglobin and antivinculin has indicated that both plaque proteins colocalize with the hallmark membrane glycoprotein of this junction type, E-cadherin (uvomorulin). When HRP used as a fluid phase marker is applied to the culture medium, simultaneously with the Ca2+ ion-chelator EGTA, numerous HRP-positive vesicles are found in close association with the dislocated plaque material, suggesting that the HRP is contained in the vesicles formed upon EGTA-induced junction splitting. Immunoelectron microscopy with various cadherin-specific antibodies revealed vesicle-associated labeling, confirming the derivation of these plaque-associated vesicles from the ZA. As the desmosome-specific cadherin, desmoglein, is recovered in another type of junction-derived vesicle, which is characterized by its association with a desmoplakin-plaque, we conclude that the membrane domains of both kinds of junction are endocytosed during Ca2+ depletion but stay in different vesicle populations, emphasizing the selective interaction of the specific cadherins with their respective plaque and filament partners.
机译:MDBK细胞中细胞间接触的释放是由培养基中的Ca2 +离子耗尽引起的,导致包含小带(ZA)特定膜成分的膜囊泡的胞吞摄取。在此过程中,结点衍生的内吞囊泡仍与ZA斑块成分相关,而斑块及其附着的肌动蛋白丝则整体呈环状从质膜上缩回,通常以碎片形式积累在膜中。近核细胞质。用抗白蛋白和抗素结合蛋白进行的双标记免疫荧光显微镜检查表明,两种噬斑蛋白均与这种连接类型的标志性膜糖蛋白,E-钙粘蛋白(umormorulin)共定位。当将用作液相标记物的HRP与Ca2 +离子螯合剂EGTA一起应用于培养基时,发现大量HRP阳性囊泡与脱位的斑块材料紧密相关,这表明HRP包含在所形成的囊泡中EGTA诱导的结膜分裂。用各种钙黏着蛋白特异性抗体进行的免疫电子显微镜检查显示囊泡相关标记,证实了这些斑块相关囊泡是从ZA衍生而来的。由于桥粒特异性钙黏着蛋白(桥粒核糖蛋白)在另一种类型的结衍生囊泡中被回收,其特征是与桥粒斑块相关,因此我们得出结论,两种结膜的膜结构域在Ca2 +耗竭过程中均被内吞。在不同的囊泡种群中,强调特定钙粘着蛋白与其各自的斑块和细丝伴侣的选择性相互作用。

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