Belly roll, a GPI-anchored Ly6 protein, regulates Drosophila melanogaster escape behaviors by modulating the excitability of nociceptive peptidergic interneurons

Author:

Li Kai1,Tsukasa Yuma1ORCID,Kurio Misato1,Maeta Kaho2,Tsumadori Akimitsu1,Baba Shumpei1,Nishimura Risa1,Murakami Akira3,Onodera Koun1ORCID,Morimoto Takako4,Uemura Tadashi15,Usui Tadao1ORCID

Affiliation:

1. Graduate School of Biostudies, Kyoto University

2. Faculty of Agriculture, Kyoto University

3. Faculty of Science, Kyoto University

4. School of Life Sciences, Tokyo University of Pharmacy and Life Sciences

5. Research Center for Dynamic Living Systems, Kyoto University

Abstract

Appropriate modulation of escape behaviors in response to potentially damaging stimuli is essential for survival. Although nociceptive circuitry has been studied, it is poorly understood how genetic contexts affect relevant escape responses. Using an unbiased genome-wide association analysis, we identified an Ly6/α-neurotoxin family protein, Belly roll (Bero), which negatively regulates Drosophila nociceptive escape behavior. We show that Bero is expressed in abdominal leucokinin-producing neurons (ABLK neurons) and bero knockdown in ABLK neurons resulted in enhanced escape behavior. Furthermore, we demonstrated that ABLK neurons responded to activation of nociceptors and initiated the behavior. Notably, bero knockdown reduced persistent neuronal activity and increased evoked nociceptive responses in ABLK neurons. Our findings reveal that Bero modulates an escape response by regulating distinct neuronal activities in ABLK neurons.

Funder

Japan Society for the Promotion of Science

Toray Science Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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