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Human colonic EVs induce murine enteric neuroplasticity via the lncRNA GAS5/miR-23/NMDA NR2B axis
QiQi Zhou, Liuqing Yang, Zachary T. Verne, Benjamin B. Zhang, Jeremy Z. Fields, Amber T. Thacker, G. Nicholas Verne
QiQi Zhou, Liuqing Yang, Zachary T. Verne, Benjamin B. Zhang, Jeremy Z. Fields, Amber T. Thacker, G. Nicholas Verne
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Research Article Gastroenterology

Human colonic EVs induce murine enteric neuroplasticity via the lncRNA GAS5/miR-23/NMDA NR2B axis

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Abstract

Postinfectious, diarrhea-predominant, irritable bowel syndrome (PI-IBS-D) is difficult to treat owing to its unknown pathophysiology. Extracellular vesicles (EVs) derived from human colon tissue and long noncoding RNAs (lncRNAs), such as growth arrest–specific 5 (GAS5), may play key roles in the pathophysiology of PI-IBS-D. To determine whether altered colonic EV lncRNA signaling leads to gastrointestinal dysfunction and heightened visceral nociception in patients with PI-IBS-D via the GAS5/miR-23ab/NMDA NR2B axis, we conducted translational studies, including those on (a) the role of colonic EV lncRNAs in patients with PI-IBS-D, human colonoids, and PI-IBS-D tissues; (b) i.p. injection of colonic EVs from patients with PI-IBS-D into Rab27a/b–/– mice (P-EV mice) to investigate whether colonic EVs drive visceral hypersensitivity in vivo via the GAS5/miR-23ab/NMDA NR2B axis; and (c) treatment of mice with oligo-miR-23 precursors and anti-GAS5 Vivo-Morpholinos for GAS5/miR-23ab/NMDA NR2B axis mechanisms. Colonic EVs from patients with PI-IBS-D, but not from control participants, demonstrated reduced miR-23a/b expression caused by enhanced GAS5 expression, which drives increased NR2B expression. Intraperitoneal injection of anti–GAS5-Vivo-Morpholino into P-EV mice increased miR-23 levels and decreased NR2B expression and VMR to CD. EVs are internal messengers that alter gastrointestinal function and increase visceral nociception in patients with PI-IBS-D. Strategies to deliver EVs to modulate GAS5/miR-23ab/NMDA NR2B axis signaling may lead to new and innovative treatments for patients with PI-IBS-D.

Authors

QiQi Zhou, Liuqing Yang, Zachary T. Verne, Benjamin B. Zhang, Jeremy Z. Fields, Amber T. Thacker, G. Nicholas Verne

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Figure 7

lncRNA GAS5 contributes to visceral nociception through interactions with miR-23a/b.

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lncRNA GAS5 contributes to visceral nociception through interactions wit...
(A) GAS5 and SNHG20 levels in PI-IBS-D colonic EVs are significantly increased (Human Inflammatory Response and Autoimmunity RT² lncRNA PCR Array). (B–E) Analysis using RegRNA 2.0 Gene prediction software: (B) lncRNAs NEAT1, MALAT1, GAS5, and MEG3 (but not SNHG20) had sequences complementary to miR-23a. RT-PCR showed significant GAS5 upregulation in both (C) colon tissues and (D) EVs of patients with PI-IBS-D versus control participants and that (E) GAS5 was also significantly upregulated in the DRGs of the P-EV mice versus C-EV mice. (F–I) Confirmation of the functional interaction between lncRNA GAS5 and miR-23a/b using a dual-luciferase assay. The relative luciferase activity of psiCHECK-2-GAS5-wt was reduced following cotransfection with oligo-miR-23a/b mimic, whereas that of oligo-miR-23a-NC and psiCHECK-2-GAS5-mut were unchanged. (J) Evaluation of the binding rate for miR-23a with GAS5 with an RNA pull-down assay showed that miR-23a pulled down 74% and 62% of GAS5 in human colon tissues and mouse DRGs, respectively.

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