Inflammatory Cytokines Rewire the Proinsulin Interaction Network in Human Islets

Author:

Tran Duc T12,Pottekat Anita13ORCID,Lee Kouta1,Raghunathan Megha1ORCID,Loguercio Salvatore4ORCID,Mir Saiful A15ORCID,Paton Adrienne W6ORCID,Paton James C6,Arvan Peter7ORCID,Kaufman Randal J1ORCID,Itkin-Ansari Pamela1ORCID

Affiliation:

1. Sanford Burnham Prebys Medical Discovery Institute , La Jolla, CA , USA

2. Plexium , San Diego, CA , USA

3. Illumina , San Diego, CA , USA

4. Scripps Research Institute , La Jolla, CA , USA

5. University of Calcutta , West Bengal , India

6. The University of Adelaide , Adelaide , Australia

7. University of Michigan Medical School , Ann Arbor, MI , USA

Abstract

Abstract Context Aberrant biosynthesis and secretion of the insulin precursor proinsulin occurs in both type I and type II diabetes. Inflammatory cytokines are implicated in pancreatic islet stress and dysfunction in both forms of diabetes, but the mechanisms remain unclear. Objective We sought to determine the effect of the diabetes-associated cytokines on proinsulin folding, trafficking, secretion, and β-cell function. Methods Human islets were treated with interleukin-1β and interferon-γ for 48 hours, followed by analysis of interleukin-6, nitrite, proinsulin and insulin release, RNA sequencing, and unbiased profiling of the proinsulin interactome by affinity purification-mass spectrometry. Results Cytokine treatment induced secretion of interleukin-6, nitrites, and insulin, as well as aberrant release of proinsulin. RNA sequencing showed that cytokines upregulated genes involved in endoplasmic reticulum stress, and, consistent with this, affinity purification-mass spectrometry revealed cytokine induced proinsulin binding to multiple endoplasmic reticulum chaperones and oxidoreductases. Moreover, increased binding to the chaperone immunoglobulin binding protein was required to maintain proper proinsulin folding in the inflammatory environment. Cytokines also regulated novel interactions between proinsulin and type 1 and type 2 diabetes genome-wide association studies candidate proteins not previously known to interact with proinsulin (eg, Ataxin-2). Finally, cytokines induced proinsulin interactions with a cluster of microtubule motor proteins and chemical destabilization of microtubules with Nocodazole exacerbated cytokine induced proinsulin secretion. Conclusion Together, the data shed new light on mechanisms by which diabetes-associated cytokines dysregulate β-cell function. For the first time, we show that even short-term exposure to an inflammatory environment reshapes proinsulin interactions with critical chaperones and regulators of the secretory pathway.

Funder

NIH

JDRF

Helmsley Charitable Trust

University of Miami

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference58 articles.

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