Inhibition of RNase 7 by RNase inhibitor promotes inflammation and Staphylococcus aureus growth: Implications for atopic dermatitis

Author:

Rademacher Franziska1,Scheel Annika1,Gläser Regine1,Schröder Lena1,Heinemann Nina1,Bartels Joachim1,Gerdes Sascha1,Stölzl Dora1,Rodriguez Elke1,Döhner Katinka23,Weidinger Stephan1ORCID,Werfel Thomas23,Harder Jürgen1ORCID

Affiliation:

1. Department of Dermatology, Quincke Research Center Kiel University Kiel Germany

2. Department of Dermatology and Allergy Hannover Medical School Hannover Germany

3. Hannover Medical School Cluster of Excellence RESIST (EXC 2155) Hannover Germany

Abstract

AbstractBackgroundThe antimicrobial ribonuclease RNase 7 is abundantly expressed in the epidermis of lesional skin of atopic dermatitis (AD). Host RNase inhibitor (RI) binds to RNase 7 and blocks its ribonuclease activity. This study aimed to evaluate the impact of RNase 7–RI interactions on AD.MethodsCultured human primary keratinocytes, with siRNA‐mediated downregulation of RNase 7 and RI, were stimulated with the synthetic RNA polyinosinic‐polycytidylic acid (poly I:C). Induction of proinflammatory mediators was analyzed by real‐time PCR and ELISA. RI expression in AD non‐lesional and lesional skin biopsies and healthy controls was analyzed by real‐time PCR and immunostaining. RI protein release in vivo on the AD skin surface was determined by western blot. Antimicrobial and ribonuclease assays were used to investigate the functional role of RI.ResultsRNase 7 inhibited the RNA‐induced expression of proinflammatory mediators in keratinocytes. Accordingly, downregulation of RNase 7 in keratinocytes enhanced RNA‐mediated induction of proinflammatory mediators, whereas downregulation of RI had the opposite effect. RI was released by damaged keratinocytes and epidermis. In vivo expression and release of RI on the skin surface were enhanced in lesional AD skin. Rinsing solution from the surface of lesional AD skin blocked the ribonuclease activity of RNase 7. The anti‐Staphylococcus aureus activity of RNase 7 was abrogated by RI.ConclusionsOur data suggest a novel role of RI as a trigger factor of inflammation in AD by blocking the ribonuclease and antimicrobial activity of RNase 7, thereby enhancing RNA‐mediated inflammation and S. aureus growth.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

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