Literature DB >> 28379093

Single amino acid substitution in LC-CDR1 induces Russell body phenotype that attenuates cellular protein synthesis through eIF2α phosphorylation and thereby downregulates IgG secretion despite operational secretory pathway traffic.

Haruki Hasegawa1, Ann Hsu2, Christine E Tinberg1, Karen E Siegler3, Aaron A Nazarian2, Mei-Mei Tsai2.   

Abstract

Amino acid sequence differences in the variable region of immunoglobulin (Ig) cause wide variations in secretion outputs. To address how a primary sequence difference comes to modulate Ig secretion, we investigated the biosynthetic process of 2 human IgG2κ monoclonal antibodies (mAbs) that differ only by one amino acid in the light chain complementarity-determining region 1 while showing ∼20-fold variance in secretion titer. Although poorly secreted, the lower-secreting mAb of the 2 was by no means defective in terms of its folding stability, antigen binding, and in vitro biologic activity. However, upon overexpression in HEK293 cells, the low-secreting mAb revealed a high propensity to aggregate into enlarged globular structures called Russell bodies (RBs) in the endoplasmic reticulum. While Golgi morphology was affected by the formation of RBs, secretory pathway membrane traffic remained operational in those cells. Importantly, cellular protein synthesis was severely suppressed in RB-positive cells through the phosphorylation of eIF2α. PERK-dependent signaling was implicated in this event, given the upregulation and nuclear accumulation of downstream effectors such as ATF4 and CHOP. These findings illustrated that the underlining process of poor Ig secretion in RB-positive cells was due to downregulation of Ig synthesis instead of a disruption or blockade of secretory pathway trafficking. Therefore, RB formation signifies an end of active Ig production at the protein translation level. Consequently, depending on how soon and how severely an antibody-expressing cell develops the RB phenotype, the productive window of Ig secretion can vary widely among the cells expressing different mAbs.

Entities:  

Keywords:  Russell body; eIF2α; endoplasmic reticulum; immunoglobulin; protein translation; single amino acid substitution

Mesh:

Substances:

Year:  2017        PMID: 28379093      PMCID: PMC5524154          DOI: 10.1080/19420862.2017.1314875

Source DB:  PubMed          Journal:  MAbs        ISSN: 1942-0862            Impact factor:   5.857


  46 in total

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Authors:  Haruki Hasegawa; Neha Patel; Ai Ching Lim
Journal:  FEBS J       Date:  2015-06-19       Impact factor: 5.542

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Authors:  Esther S P Wong; Jeanne M M Tan; Wen-E Soong; Kamila Hussein; Nobuyuki Nukina; Valina L Dawson; Ted M Dawson; Ana Maria Cuervo; Kah-Leong Lim
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Authors:  Haruki Hasegawa
Journal:  Int J Cell Biol       Date:  2013-03-05
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  4 in total

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Journal:  Cell Logist       Date:  2017-08-08

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Journal:  Autophagy       Date:  2021-09-05       Impact factor: 13.391

3.  Russell-Like Bodies in Plant Seeds Share Common Features With Prolamin Bodies and Occur Upon Recombinant Protein Production.

Authors:  Elsa Arcalis; Verena Ibl; Julia Hilscher; Thomas Rademacher; Linda Avesani; Francesca Morandini; Luisa Bortesi; Mario Pezzotti; Alessandro Vitale; Dietmar Pum; Thomas De Meyer; Ann Depicker; Eva Stoger
Journal:  Front Plant Sci       Date:  2019-06-26       Impact factor: 5.753

4.  Rational optimization of a monoclonal antibody improves the aggregation propensity and enhances the CMC properties along the entire pharmaceutical process chain.

Authors:  Joschka Bauer; Sven Mathias; Sebastian Kube; Kerstin Otte; Patrick Garidel; Martin Gamer; Michaela Blech; Simon Fischer; Anne R Karow-Zwick
Journal:  MAbs       Date:  2020 Jan-Dec       Impact factor: 5.857

  4 in total

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