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Dlx1/2 mice have abnormal enteric nervous system function
Christina M. Wright, James P. Garifallou, Sabine Schneider, Heather L. Mentch, Deepika R. Kothakapa, Beth A. Maguire, Robert O. Heuckeroth
Christina M. Wright, James P. Garifallou, Sabine Schneider, Heather L. Mentch, Deepika R. Kothakapa, Beth A. Maguire, Robert O. Heuckeroth
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Research Article Development Neuroscience

Dlx1/2 mice have abnormal enteric nervous system function

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Abstract

Decades ago, investigators reported that mice lacking DLX1 and DLX2, transcription factors expressed in the enteric nervous system (ENS), die with possible bowel motility problems. These problems were never fully elucidated. We found that mice lacking DLX1 and DLX2 (Dlx1/2–/– mice) had slower small bowel transit and reduced or absent neurally mediated contraction complexes. In contrast, small bowel motility seemed normal in adult mice lacking DLX1 (Dlx1–/–). Even with detailed anatomic studies, we found no defects in ENS precursor migration, or neuronal and glial density in Dlx1/2–/– or Dlx1–/– mice. However, RNA sequencing of Dlx1/2–/– ENS revealed dysregulation of many genes, including vasoactive intestinal peptide (Vip). Using immunohistochemistry and reporter mice, we then found that Dlx1/2–/– mice have reduced VIP expression and fewer VIP-lineage neurons in their ENS. Our study reveals what we believe is a novel connection between Dlx genes and Vip and highlights the observation that dangerous bowel motility problems can occur in the absence of easily identifiable ENS structural defects. These findings may be relevant for disorders like chronic intestinal pseudo-obstruction (CIPO) syndrome.

Authors

Christina M. Wright, James P. Garifallou, Sabine Schneider, Heather L. Mentch, Deepika R. Kothakapa, Beth A. Maguire, Robert O. Heuckeroth

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Figure 9

Dlx1/2–/– mice have apparently normal large nerve fiber bundles but decreased CSM neurite density on some strain backgrounds.

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Dlx1/2–/– mice have apparently normal large nerve fiber bundles but dec...
(A–H) Myenteric plexus labeled with TuJ1 (green; A and E), TdTomato (red; B and F), and HuC/D (blue; C and G). All large nerve fiber bundles (white arrowheads) were TdTomato+. (I and J) Myenteric plexus nerve fiber bundle width (white line, I) was similar in Dlx1/2–/– and control mice (J; P = 0.4565, Student’s t test, n = 4 per genotype). (K–P) Circular muscle neurites labeled with TuJ1 (green; K and N) and TdTomato (magenta; L and O) from P0 bowel. Some neurites were TdTomato+ and TuJ1+ (white arrowheads), while others were TuJ1+ alone (white arrows). (Q) Density of total TuJ1+ neurites was decreased in Dlx1/2–/– Vip-IRES-Cre TdTomato P0 bowel (P = 0.0077, Student’s t test, n = 4 [ctrl], n = 3 [–/–]). (R) Ratio of TdTomato+ neurites to TuJ1+ neurons was unchanged (P = 0.5587, Student’s t test, n = 4 [ctrl], n = 3 [–/–]). (S) Density of TdTomato+ neurites was not statistically different for control and Dlx1/2–/– mice (P = 0.1006, Student’s t test, n = 4 [ctrl], n = 3 [–/–]). (T) Density of total TuJ1+ neurites was normal for Dlx1/2–/– mice on a CD1 background (P = 0.3193, Student’s t test, n = 4 [ctrl], n = 4 [–/–]). Scale bars: 100 μm (D–H and K–P) and 50 μm (I). **P < 0.001.

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