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The subcellular distribution of early endosomes is affected by the annexin II2p11(2) complex

机译:早期内体的亚细胞分布受到膜联蛋白II2p11(2)复合物的影响

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摘要

The tyrosine kinase substrate annexin II is a member of a multigene family of Ca2+ and lipid-binding proteins which have been implicated in a number of membrane-related events. We have analyzed the subcellular distribution of annexin II in relation to other cellular components in normal and specifically manipulated MDCK cells. In a polarized monolayer of MDCK cells annexin II and its cellular ligand p11 are restricted almost exclusively to the cortical regions of the cells which also contain peripheral early endosomes. Treatment of the polarized cells with low Ca2+ medium leads to a disintegration of the cortical cytoskeleton and a translocation of both, the annexin II2p11(2) complex and early endosomes, to the cytoplasm. A similar translocation which is however specific for the annexin II2p11(2) complex and early endosomes and does not affect other elements of the cell cortex is observed in cells expressing a trans-dominant annexin II- p11 mutant. This chimeric mutant protein causes the aggregation of endogenous annexin II and p11 and the simultaneous detachment of early endosomes from the cell periphery resulting in the binding of the early endosomes but no other components of the endocytotic or biosynthetic pathways to the annexin II/p11 aggregates. The specificity of this effect argues for the association of the annexin II2p11(2) complex with early endosomes and suggests that this association contributes to establish the peripheral localization of early endosomal structures.
机译:酪氨酸激酶底物膜联蛋白II是Ca2 +和脂质结合蛋白的多基因家族的成员,这些家族与许多膜相关事件有关。我们已经分析了膜联蛋白II的亚细胞分布与正常和特制的MDCK细胞中其他细胞成分的关系。在极化的MDCK细胞单层膜中,膜联蛋白II及其细胞配体p11几乎仅限于还包含外周早期内体的细胞皮质区域。用低Ca2 +培养基处理极化细胞会导致皮质细胞骨架解体,同时将膜联蛋白II2p11(2)复合物和早期内体都转移到细胞质中。然而,在表达反式主导的膜联蛋白II-p11突变体的细胞中观察到类似的易位,其对膜联蛋白II2p11(2)复合物和早期内体具有特异性,并且不影响细胞皮质的其他元件。该嵌合突变蛋白引起内源性膜联蛋白II和p11的聚集,并导致早期内体从细胞周围脱离,导致早期内体结合,但胞吞或生物合成途径的其他成分均不与膜联蛋白II / p11聚集体结合。这种作用的特异性证明了膜联蛋白II2p11(2)复合物与早期内体的关联,并表明这种关联有助于建立早期内体结构的外围定位。

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