DRG afferents that mediate physiologic and pathologic mechanosensation from the distal colon

Author:

Wolfson Rachel L.ORCID,Abdelaziz Amira,Rankin Genelle,Kushner Sarah,Qi Lijun,Mazor Ofer,Choi Seungwon,Sharma Nikhil,Ginty David D.

Abstract

AbstractThe properties of dorsal root ganglia (DRG) neurons that innervate the distal colon are poorly defined, hindering our understanding of their roles in normal physiology and gastrointestinal disease. Here, we report genetically defined subsets of colon innervating DRG neurons with diverse morphologic and physiologic properties. Four colon innervating DRG neuron populations are mechanosensitive and exhibit distinct force thresholds to colon distension. The highest threshold population, selectively labeled usingBmpr1bgenetic tools, is necessary and sufficient for behavioral responses to high colon distension, which is partly mediated by the mechanosensory ion channel Piezo2. This HTMR population mediates behavioral over-reactivity to colon distension caused by inflammation in a model of inflammatory bowel disease. Thus, like cutaneous mechanoreceptor populations, colon innervating DRG afferents exhibit distinct anatomical and physiological properties and tile force threshold space, and genetically defined colon innervating HTMRs mediate pathophysiological responses to colon distension revealing a target population for therapeutic intervention.

Publisher

Cold Spring Harbor Laboratory

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