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Evidence from lateral mobility studies for dynamic interactions of a mutant influenza hemagglutinin with coated pits

机译:来自横向迁移性研究的证据表明突变型流感血凝素与带涂层的凹坑发生动态相互作用

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摘要

Replacement of cysteine at position 543 by tyrosine in the influenza virus hemagglutinin (HA) protein enables the endocytosis of the mutant protein (Tyr 543) through coated pits (Lazarovits, J., and M. G. Roth. 1988. Cell. 53:743-752). To investigate the interactions between Tyr 543 and the clathrin coats in the plasma membrane of live cells, we performed fluorescence photobleaching recovery measurements comparing the lateral mobilities of Tyr 543 (which enters coated pits) and wild- type HA (HA wt, which is excluded from coated pits), following their expression in CV-1 cells by SV-40 vectors. While both proteins exhibited the same high mobile fractions, the lateral diffusion rate of Tyr 543 was significantly slower than that of HA wt. Incubation of the cells in a sucrose-containing hypertonic medium, a treatment that disperses the membrane-associated coated pits, resulted in similar lateral mobilities for Tyr 543 and HA wt. These findings indicate that the lateral motion of Tyr 543 (but not of HA wt) is inhibited by transient interactions with coated pits (which are essentially immobile on the time scale of the lateral mobility measurements). Acidification of the cytoplasm by prepulsing the cells with NH4Cl (a treatment that arrests the pinching-off of coated vesicles from the plasma membrane and alters the clathrin lattice morphology) led to immobilization of a significant part of the Tyr 543 molecules, presumably due to their entrapment in coated pits for the entire duration of the lateral mobility measurement. Furthermore, in both untreated and cytosol- acidified cells, the restrictions on Tyr 543 mobility were less pronounced in the cold, suggesting that the mobility-restricting interactions are temperature dependent and become weaker at low temperatures. From these studies we conclude the following. (a) Lateral mobility measurements are capable of detecting interactions of transmembrane proteins with coated pits in intact cells. (b) The interactions of Tyr 543 with coated pits are dynamic, involving multiple entries of Tyr 543 molecules into and out of coated pits. (c) Alterations in the clathrin lattice structure can modulate the above interactions.
机译:流感病毒血凝素(HA)蛋白中的酪氨酸替换了543位的半胱氨酸,使突变蛋白(Tyr 543)通过包膜的凹坑内吞(Lazarovits,J.和MG Roth。1988. Cell。53:743-752 )。为了研究Tyr 543和活细胞质膜中网格蛋白涂层之间的相互作用,我们进行了荧光光漂白恢复测量,比较了Tyr 543(进入包膜的小凹坑)和野生型HA(HA wt,不包括在内)的横向迁移率然后通过SV-40载体在CV-1细胞中表达。尽管两种蛋白质均显示出相同的高流动性分数,但Tyr 543的横向扩散速率明显低于HA wt。的横向扩散速率。将细胞在含蔗糖的高渗介质中孵育(一种分散与膜相关的包膜凹点的处理),可产生类似的Tyr 543和HA wt侧向迁移率。这些发现表明,Tyr 543(而不是HA wt)的横向运动受到与涂层凹坑(在横向迁移率测量的时间尺度上基本上不动)的瞬时相互作用的抑制。通过用NH4Cl预脉冲细胞来酸化细胞质(这种处理可阻止质膜上包被的囊泡的夹断并改变网格蛋白的晶格形态),导致大部分Tyr 543分子被固定化在横向迁移率测量的整个过程中都被包埋在凹坑中。此外,在未经处理的和胞浆酸化的细胞中,对Tyr 543迁移的限制在寒冷时都不太明显,这表明限制迁移的相互作用是温度依赖性的,并且在低温下变弱。从这些研究中,我们得出以下结论。 (a)横向迁移率测量能够检测跨膜蛋白与完整细胞中包被的凹坑的相互作用。 (b)Tyr 543与涂层凹坑的相互作用是动态的,涉及Tyr 543分子多次进入和离开涂层凹坑。 (c)网格蛋白晶格结构的改变可以调节上述相互作用。

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