Abstract

Among the many plant-based production systems that are being tested for molecular farming, seeds are very attractive, as they provide a stable environment in which the accumulating recombinant proteins can be stored. However, it is not known exactly how high production levels of recombinant antibodies influence the endogenous transcriptome and proteome of the developing seed. To address this question, we studied the transcriptomic status in developing Arabidopsis (Arabidopsis thaliana) seeds 13 d post anthesis of three transgenic lines, producing varying levels of recombinant VHH or single-chain Fv antibody fragments fused to the human immunoglobulin G1-derived Fc fragment under the control of the β-PHASEOLIN seed-specific promoter. Using genome-wide Tiling arrays, we demonstrated that only a small proportion of the transcriptome was significantly changed in each of the lines compared with the wild type. Strikingly, in all three lines, we found a large overlap of up-regulated genes corresponding to protein folding, glycosylation/modification, translocation, vesicle transport, and protein degradation, suggestive of a state of cellular stress called the unfolded protein response. Moreover, the gene up-regulation amplitude was similar in all three lines. We hypothesize that the production of recombinant antibodies in the endoplasmic reticulum triggers endoplasmic reticulum stress, causing a disturbance of the normal cellular homeostasis.

Highlights

  • Among the many plant-based production systems that are being tested for molecular farming, seeds are very attractive, as they provide a stable environment in which the accumulating recombinant proteins can be stored

  • Recombinant protein production is a demanding process for the host cell, as an additional foreign protein needs to be produced besides the endogenous proteome

  • Our results provide insight into the biological processes that are changed upon recombinant protein production in Arabidopsis seeds and suggest that seed-specific antibody production evokes endoplasmic reticulum (ER) stress triggering the unfolded protein response (UPR), already at antibody accumulation levels of 1% of total soluble seed protein

Read more

Summary

Introduction

Among the many plant-based production systems that are being tested for molecular farming, seeds are very attractive, as they provide a stable environment in which the accumulating recombinant proteins can be stored. It is not known exactly how high production levels of recombinant antibodies influence the endogenous transcriptome and proteome of the developing seed. The DnaJ protein Thermosensitive Male Sterile (TMS1) is a molecular chaperone of the HSP40 family and is suggested to work in cooperation with the HSP70 chaperones (Yamamoto et al, 2008)

Methods
Results
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call