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Loma Linda University

Ricin B Chain-Insulin Fusion Protein Immunomodulation of Type 1 Diabetes

Abstract

dc:description.abstract

<p>Type 1 diabetes mellitus (T1D) is a debilitating chronic inflammatory disease of the insulin-producing pancreatic islet β-cells that results from a combination of genetic and environmental factors. Attempts to suppress Th1-mediated autoimmune diseases such as T1D by mucosal delivery of autoantigens for immunotolerization have yielded only partial success. Attainment of satisfactory levels of sustained immunological tolerance remains to be accomplished. To restore self-tolerance requires delivery of sufficient amounts of autoantigen to stimulate regulatory T helper cells that function to survey the gut and induce tolerance to consumed antigens such as food. Oral delivery of autoantigens has previously been shown to elicit IL-4, IL-10, and TGF-β suppressor cytokine release by regulatory T-cells, but large autoantigen doses are usually required to overcome protease degradation in the gut.</p> <p>To enhance the effectiveness of oral tolerance therapy, the diabetes autoantigen proinsulin was linked to the non-toxic B chain of ricin—an enterocyte-binding plant lectin that possesses intrinsic cell-delivery and immunostimulatory properties. The human proinsulin (INS) ricin toxin B chain (RTB) fusion protein was expressed in <em>Escherichia coli </em>and purified for use in an animal inoculation experiment to test for the suppression of diabetes symptoms. Non-obese diabetic (NOD) mice were orally inoculated and boosted with purified INS-RTB. Histopathological examination of immunized mouse pancreatic tissue showed significantly less lymphocyte infiltration into pancreatic islets of Langerhans (regions of insulin production by β-cells) than did mice dosed with INS alone or in untreated animals.</p> <p>The bacterial-produced INS-RTB was synthesized as a denatured aggregate that, despite numerous attempts to dialyze in a variety of refolding buffers, would only yield ~6 - 8% of native, biologically active INS-RTB protein. Therefore, the INS-RTB genes were introduced into the genome of potato plants by<em> Agrobacterium tumefaciens </em>mediated transformation for the generation of a properly folded, post-translationally modified source of INS-RTB fusion protein characteristic of a eukaryotic production system. Synthesis of the INS-RTB protein was confirmed by tissue immunoprint and Western blot using antibodies that bind INS and RTB. Lectin activity of natively folded RTB fusion protein was determined by binding to asialofetuin in an enzyme-linked immunosorbent assay.</p>

Degree

thesis:*
Name thesis:degree_name
Doctor of Philosophy (PhD)
Level thesis:degree_level
Dissertation
Discipline thesis:degree_discipline
Biochemistry
Year
2010

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Carter, James Edward, III
Contributors dc:contributor
  • William H. R. Langridge
  • Penelope J. Duerksen-Hughes
  • Alan P. Escher
  • Daila S. Gridley
  • E. Clifford Herrmann

Subjects

dc:subject × 8

Rights

dc:rights
Statement dc:rights
  • This title appears here courtesy of the author, who has granted Loma Linda University a limited, non-exclusive right to make this publication available to the public. The author retains all other copyrights.
Language dc:language
English

Identifiers

dc:identifier.*
Repository record dc:identifier
https://scholarsrepository.llu.edu/etd/1536
OAI identifier oai:identifier
oai:scholarsrepository.llu.edu:etd-2313

Chain of custody

source
Harvested from
Loma Linda University
Base URL
scholarsrepository.llu.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Carter, James Edward, III. Ricin B Chain-Insulin Fusion Protein Immunomodulation of Type 1 Diabetes. Dissertation thesis, 2010. https://scholarsrepository.llu.edu/etd/1536