免疫球蛋白可变区和γ - 2恒定区酸性斑块的分子间相互作用介导了内质网晶体包涵体的形成。

Cellular logistics Pub Date : 2017-08-08 eCollection Date: 2017-01-01 DOI:10.1080/21592799.2017.1361499
Haruki Hasegawa, Mei Geng, Randal R Ketchem, Ling Liu, Kevin Graham, Frederick Jacobsen
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引用次数: 2

摘要

全长免疫球蛋白(Igs)由于其大尺寸、n链糖基化和柔性铰链区而被广泛认为难以结晶。然而,大量的胞内Ig结晶在浆细胞异常中被报道。是什么使一些Ig克隆在生物合成过程中更容易结晶,以及对这一神秘事件的生化和细胞生物学要求尚不清楚。为了研究细胞内Ig结晶的潜在过程,我们寻找了在重组过表达过程中可以诱导结晶包涵体的模型igg。通过混合和匹配来自一组人IgG克隆的单个亚基链来测试各种亚基组合,我们确定了一个分泌能力强的IgG2λ,在转染的HEK293细胞中诱导针状晶体包涵体。在稳态细胞生长条件下很少发生Ig结晶,但当内质网到高尔基体的转运被药物阻断时,Ig结晶很容易被诱导。同源性模型显示在可变结构域表面上存在一个显著的带负电荷的斑块。该斑块由8个天冬氨酸组成,其中5个在重链可变区,3个在轻链。只有当两个亚基共转染并且细胞内晶体与内质网驻留蛋白共定位时,才会发生结晶。此外,从IgG2到IgG1的亚型转换和酸性斑块的逐步中和独立地取消了Ig结晶事件。证据支持内质网中针状晶体包裹体的形成是由酸性斑块和γ - 2亚基常数区未定义决定因素之间的多价分子间相互作用所强调的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Intermolecular interactions involving an acidic patch on immunoglobulin variable domain and the γ2 constant region mediate crystalline inclusion body formation in the endoplasmic reticulum.

Full-length immunoglobulins (Igs) are widely considered difficult to crystallize because of their large size, N-linked glycosylation, and flexible hinge region. However, numerous cases of intracellular Ig crystallization are reported in plasma cell dyscrasias. What makes some Ig clones more prone to crystallize during biosynthesis as well as the biochemical and cell biological requirements for this cryptic event are poorly understood. To investigate the underlying process of intracellular Ig crystallization we searched for model IgGs that can induce crystalline inclusions during recombinant overexpression. By testing various subunit combinations through mixing and matching of individual subunit chains derived from a panel of human IgG clones, we identified one secretion competent IgG2λ that induced needle-like crystalline inclusions in transfected HEK293 cells. Ig crystallization rarely occurred at steady-state cell growth conditions but was easily induced when ER-to-Golgi transport was pharmacologically blocked. Homology modeling revealed the presence of a prominent negatively-charged patch on the variable domain surface. The patch was composed of eight aspartic acids, of which five were in the heavy chain variable region and three were in the light chain. Crystallization occurred only when the two subunits were co-transfected and the intracellular crystals co-localized with ER resident proteins. Furthermore, subtype switching from IgG2 to IgG1 and stepwise neutralization of the acidic patch independently abrogated Ig crystallization events. The evidence supported that the formation of needle-like crystalline inclusions in the ER was underscored by multivalent intermolecular interactions between the acidic patch and undefined determinants present on the γ2 subunit constant region.

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