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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 8

Silencing or knockdown of GAS5 regulated miR-23 and NR2B expression.

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Silencing or knockdown of GAS5 regulated miR-23 and NR2B expression.
(A)...
(A) Silencing of lncRNA GAS5 increases the expression level of miR-23a, indicating that lncRNA GAS5 directly binds to miR-23a in DRG neurons. (B) NMDA NR2B expression was significantly downregulated after silencing of lncRNA GAS5. (C) FISH with IHC in PI-IBS-D colon tissue showing GAS5 colocalized with a neuronal marker (NeuN647). (D) FISH with IHC in PI-IBS-D colon tissue showing GAS5 colocalized with NMDA NR2B. (E–K) Vivo-Morpholino (VM) knockdown of GAS5. (E) P-EV mice administered GAS5-Vivo-Morpholino on day 5 showed significantly decreased VMR to CD compared with that of controls. (F) Increased miR-23a/b expression in mouse DRGs 2 days following GAS5-Vivo-Morpholino. (G) Decreased NMDA NR2B expression in P-EV mouse DRGs 2 days following GAS5-Vivo-Morpholino. (H and I) Single-cell PCR in colonic neuronal cells revealed significantly increased miR-23a/b expression (H) but decreased NMDA NR2B expression (I) in colonic neuronal cells after i.p. injection with GAS5-Vivo-Morpholino. (J and K) Single-cell PCR in colonic epithelial cells showed significantly increased miR-23a/b expression (J) but not NR2B (K) after GAS5-vivo-Morpholino. *P = 0.05, **P = 0.01 by unpaired t test.

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