SUMOylation of Dorsal attenuates Toll/NF-κB signaling

Author:

Hegde Sushmitha1ORCID,Sreejan Ashley2ORCID,Gadgil Chetan J23ORCID,Ratnaparkhi Girish S1ORCID

Affiliation:

1. Biology, Indian Institute of Science Education & Research , Pune 411008, India

2. Chemical Engineering and Process Development Division, CSIR—National Chemical Laboratory , Pune 411008, India

3. CSIR—Institute of Genomics and Integrative Biology , New Delhi 110020, India

Abstract

Abstract In Drosophila, Toll/NF-κB signaling plays key roles in both animal development and in host defense. The activation, intensity, and kinetics of Toll signaling are regulated by posttranslational modifications such as phosphorylation, SUMOylation, or ubiquitination that target multiple proteins in the Toll/NF-κB cascade. Here, we have generated a CRISPR-Cas9 edited Dorsal (DL) variant that is SUMO conjugation resistant. Intriguingly, embryos laid by dlSCR mothers overcome dl haploinsufficiency and complete the developmental program. This ability appears to be a result of higher transcriptional activation by DLSCR. In contrast, SUMOylation dampens DL transcriptional activation, ultimately conferring robustness to the dorso-ventral program. In the larval immune response, dlSCR animals show an increase in crystal cell numbers, stronger activation of humoral defense genes, and high cactus levels. A mathematical model that evaluates the contribution of the small fraction of SUMOylated DL (1–5%) suggests that it acts to block transcriptional activation, which is driven primarily by DL that is not SUMO conjugated. Our findings define SUMO conjugation as an important regulator of the Toll signaling cascade, in both development and host defense. Our results broadly suggest that SUMO attenuates DL at the level of transcriptional activation. Furthermore, we hypothesize that SUMO conjugation of DL may be part of a Ubc9-dependent mechanism that restrains Toll/NF-κB signaling.

Funder

Science and Engineering Board

Department of Science and Technology

Genome Engineering technology

Department of Biotechnology

IISER

National Facility for Gene Function in Health and Disease (NFGFHD) at IISER

Council of Scientific and Industrial Research

Publisher

Oxford University Press (OUP)

Subject

Genetics

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