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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Russell body inducing threshold depends on the variable domain sequences of individual human IgG clones and the cellular protein homeostasis
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Russell body inducing threshold depends on the variable domain sequences of individual human IgG clones and the cellular protein homeostasis

机译:罗素体诱导阈值取决于单个人IgG克隆的可变域序列和细胞蛋白稳态

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摘要

Russell bodies are intracellular aggregates of immunoglobulins. Although the mechanism of Russell body biogenesis has been extensively studied by using truncated mutant heavy chains, the importance of the variable domain sequences in this process and in immunoglobulin biosynthesis remains largely unknown. Using a panel of structurally and functionally normal human immunoglobulin Gs, we show that individual immunoglobulin G clones possess distinctive Russell body inducing propensities that can surface differently under normal and abnormal cellular conditions. Russell body inducing predisposition unique to each immunoglobulin G clone was corroborated by the intrinsic physicochemical properties encoded in the heavy chain variable domain/light chain variable domain sequence combinations that define each immunoglobulin G clone. While the sequence based intrinsic factors predispose certain immunoglobulin G clones to be more prone to induce Russell bodies, extrinsic factors such as stressful cell culture conditions also play roles in unmasking Russell body propensity from immunoglobulin G clones that are normally refractory to developing Russell bodies. By taking advantage of heterologous expression systems, we dissected the roles of individual subunit chains in Russell body formation and examined the effect of non-cognate subunit chain pair co-expression on Russell body forming propensity. The results suggest that the properties embedded in the variable domain of individual light chain clones and their compatibility with the partnering heavy chain variable domain sequences underscore the efficiency of immunoglobulin G biosynthesis, the threshold for Russell body induction, and the level of immunoglobulin G secretion. We propose that an interplay between the unique properties encoded in variable domain sequences and the state of protein homeostasis determines whether an immunoglobulin G expressing cell will develop the Russell body phenotype in a dynamic cellular setting.
机译:罗素体是免疫球蛋白的细胞内聚集体。尽管已通过使用截短的突变体重链广泛研究了罗素体生物发生的机制,但可变域序列在此过程中以及在免疫球蛋白生物合成中的重要性仍然未知。使用一组结构和功能正常的人免疫球蛋白Gs,我们显示了单个的免疫球蛋白G克隆具有独特的罗素体诱导倾向,在正常和异常细胞条件下其表面可能不同。通过定义每个免疫球蛋白G克隆的重链可变域/轻链可变域序列组合中编码的内在物理化学特性,证实了每个免疫球蛋白G克隆特有的罗素体诱导性。尽管基于序列的内在因素使某些免疫球蛋白G克隆更易于诱导罗素体,但外部因素(例如应激细胞培养条件)也从通常对发育中的罗素体呈难治性的免疫球蛋白G克隆中揭示了罗素体的倾向。通过利用异源表达系统,我们剖析了单个亚基链在罗素体形成中的作用,并研究了非同源亚基链对共表达对罗素体形成倾向的影响。结果表明,嵌入在单个轻链克隆的可变域中的特性及其与伙伴重链可变域序列的相容性强调了免疫球蛋白G生物合成的效率,罗素体诱导的阈值和免疫球蛋白G分泌的水平。我们建议可变域序列中编码的独特属性和蛋白质稳态之间的相互作用决定了免疫球蛋白G表达细胞是否会在动态细胞环境中发展罗素体表型。

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