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Body-wide genetic deficiency of poly(ADP-ribose) polymerase 14 sensitizes mice to colitis

Vedantham, Madhukar; Polari, Lauri; Poosakkannu, Anbu; Pinto, Rita G.; Sakari, Moona; Laine, Jukka; Sipilä, Petra; Määttä, Jorma; Gerke, Heidi; Rissanen, Tiia; Rantakari, Pia; Toivola, Diana M.; Pulliainen, Arto T.

Body-wide genetic deficiency of poly(ADP-ribose) polymerase 14 sensitizes mice to colitis

Vedantham, Madhukar
Polari, Lauri
Poosakkannu, Anbu
Pinto, Rita G.
Sakari, Moona
Laine, Jukka
Sipilä, Petra
Määttä, Jorma
Gerke, Heidi
Rissanen, Tiia
Rantakari, Pia
Toivola, Diana M.
Pulliainen, Arto T.
Katso/Avaa
The FASEB Journal - 2024 - Vedantham - Body‐wide genetic deficiency of poly ADP‐ribose polymerase 14 sensitizes mice to.pdf (62.95Mb)
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John Wiley & Sons
doi:10.1096/fj.202400484R
URI
https://faseb.onlinelibrary.wiley.com/doi/10.1096/fj.202400484R
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2025082790196
Tiivistelmä
Inflammatory bowel disease (IBD) is a chronic disease of the gastrointestinal tract affecting millions of people. Here, we investigated the expression and functions of poly(ADP-ribose) polymerase 14 (Parp14), an important regulatory protein in immune cells, with an IBD patient cohort as well as two mouse colitis models, that is, IBD-mimicking oral dextran sulfate sodium (DSS) exposure and oral Salmonella infection. Parp14 was expressed in the human colon by cells in the lamina propria, but, in particular, by the epithelial cells with a granular staining pattern in the cytosol. The same expression pattern was evidenced in both mouse models. Parp14-deficiency caused increased rectal bleeding as well as stronger epithelial erosion, Goblet cell loss, and immune cell infiltration in DSS-exposed mice. The absence of Parp14 did not affect the mouse colon bacterial microbiota. Also, the colon leukocyte populations of Parp14-deficient mice were normal. In contrast, bulk tissue RNA-Seq demonstrated that the colon transcriptomes of Parp14-deficient mice were dominated by abnormalities in inflammation and infection responses both prior and after the DSS exposure. Overall, the data indicate that Parp14 has an important role in the maintenance of colon epithelial barrier integrity. The prognostic and predictive biomarker potential of Parp14 in IBD merits further investigation.
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