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首页> 外文期刊>Biological & pharmaceutical bulletin >Characterization of Russell Bodies Accumulating Mutant Antithrombin Derived from the Endoplasmic Reticulum
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Characterization of Russell Bodies Accumulating Mutant Antithrombin Derived from the Endoplasmic Reticulum

机译:罗素体积累的内质网突变抗凝血酶的表征。

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摘要

The endoplasmic reticulum (ER) adjusts its size and architecture to adapt to change in the surrounding environment. Russell bodies (RBs) were originally described as dilated structures of the ER cisternae containing large amounts of mutant immunoglobulin. Similar structures are observed in a wide variety of mutant proteins accumulated in the ER. We previously prepared Chinese hamster ovary (CHO) cells in which the expression of mutant antithrombin (AT) (C95R) was controlled with a Tet-On system and showed that RBs can be conditionally formed. However the precise architecture and intracellular behavior of RBs have been as yet only poorly characterized. To characterize the properties of RB, we prepared the same system using a green fluorescent protein (GFP)-fused mutant and measured the dynamics and architecture of RBs. We observed the mobile nature of the molecule in the RB lumen and RBs were separated from the rest of the ER network by narrow tubes. Furthermore, we found that the RBs were not simply expanded ER membranes. The RB lumen is filled with misfolded proteins that are surrounded by ER membranes. In addition, RBs mostly maintain their structure during cell division, possess ribosomes on their membranes and synthesize AT(C95R)-GFP. Based on the characterization of the hydrodynamic radius of AT(C95R)-GFP and the effect of Dp1, an ER-shaping protein, we propose that RBs are spontaneously formed as a result of the partitioning of the misfolded AT with the shaping protein.
机译:内质网(ER)会调整其大小和结构,以适应周围环境的变化。罗素体(RBs)最初被描述为含有大量突变免疫球蛋白的ER池的扩张结构。在ER中积累的多种突变蛋白中观察到相似的结构。我们先前准备了中国仓鼠卵巢(CHO)细胞,其中通过Tet-On系统控制突变型抗凝血酶(AT)(C95R)的表达,并表明可以有条件地形成RB。但是,RB的精确结构和细胞内行为迄今尚未被很好地表征。为了表征RB的特性,我们使用绿色荧光蛋白(GFP)融合突变体制备了相同的系统,并测量了RB的动力学和结构。我们观察到了分子在RB管腔中的移动性,并且RB通过窄管与ER网络的其余部分分开。此外,我们发现RB不是简单的膨胀ER膜。 RB管腔充满了错误折叠的蛋白质,这些蛋白质被ER膜包围。另外,RB在细胞分裂过程中大部分保持其结构,在其膜上具有核糖体并合成AT(C95R)-GFP。基于AT(C95R)-GFP的流体力学半径的表征和ER成型蛋白Dp1的作用,我们提出由于错误折叠的AT与成型蛋白的分配而自发形成了RB。

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