MUC13 negatively regulates tight junction proteins and intestinal epithelial barrier integrity via Protein Kinase C

Publication date

2022-10-27

Authors

Pérez, Celia SeguíISNI 000000051260655X
Stapels, Daphne A. C.ORCID 0000-0001-7058-541XISNI 0000000492926272
Ma, ZiliangISNI 0000000524132339
Su, JinyiISNI 0000000527706617
Passchier, Elsemieke
Westendorp, BartORCID 0000-0003-1043-3638ISNI 0000000396403121
Wu, WeiISNI 0000000107490485
van Putten, Jos P MORCID 0000-0002-4126-8172ISNI 000000038907215X
Strijbis, KarinORCID 0000-0001-9167-7137ISNI 0000000387133051

Editors

Advisors

Supervisors

Document Type

/dk/atira/pure/researchoutput/researchoutputtypes/workingpaper/preprint
Open Access logo

License

cc_by

Abstract

Regulation and adaptation of intestinal epithelial barrier function is essential for human health. The transmembrane mucin MUC13 is an abundant intestinal glycoprotein with important functions for mucosal maintenance that are not yet completely understood. We demonstrate that in intestinal epithelial monolayers MUC13 localized to both the apical surface and the tight junction (TJ) region on the lateral membrane. MUC13 deletion resulted in increased transepithelial resistance (TEER) and reduced translocation of small solutes. TJ proteins including claudins and occludin were highly increased in membrane fractions of MUC13 knockout cells. Removal of the MUC13 cytoplasmic tail (CT) also altered TJ composition but did not result in increased TEER. The increased buildup of TJ complexes in ΔMUC13 and MUC13-ΔCT cells was dependent on PKC, which is in line with a predicted PKC motif in the MUC13 cytoplasmic tail. The responsible PKC member might be PKCδ based on elevated protein levels in the absence of MUC13. Our results identify MUC13 as a central player in TJ complex stability and intestinal barrier permeability.

Keywords

SDG 3 - Good Health and Well-being

Citation

Segui-Perez, C, Stapels, D A C, Ma, Z, Su, J, Passchier, E, Westendorp, B, Wu, W, Putten, J P M V & Strijbis, K 2022 'MUC13 negatively regulates tight junction proteins and intestinal epithelial barrier integrity via Protein Kinase C' bioRxiv, pp. 1-30. https://doi.org/10.1101/2022.10.27.513982