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A Catalytically Inactive Calpain Protease Patterns the Insect Embryonic Dorsal-ventral Axis

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Specialty Biology
Date 2024 Sep 12
PMID 39262636
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Abstract

The calcium dependent Calpain proteases are modulatory enzymes with important roles in cell cycle control, development and immunity. In the fly model Calpain A cleaves Cactus/IkappaB and consequently modifies Toll signals during embryonic dorsal-ventral (DV) patterning. Here we explore the role of Calpains in the hemiptera , an intermediate germband insect where the Bone Morphogenetic Protein (BMP) instead of the Toll pathway plays a major role in DV patterning. Phylogenetic analysis of Calpains in species ranging from Isoptera to Diptera indicates an increase of Calpain sequences in the genome and other hemimetabolous species. One locus encoding each of the and families, and seven Calpain A/B loci are present in the genome. Several predicted Calpains display a unique architecture, such as loss of Calcium-binding EF-hand domains and loss of catalytic residues in the active site CysPc domain, yielding catalytically dead Calpains A/B. Knockdown for one of these inactive Calpains results in embryonic DV patterning defects, with expansion of ventral and lateral gene expression domains and consequent failure of germ band elongation. In conclusion, our results reveal that Calpains may exert a conserved function in insect DV patterning, despite the changing role of the Toll and BMP pathways in defining gene expression territories along the insect DV axis.

References
1.
Henriques B, Gomes B, da Costa S, da Silva Moraes C, Mesquita R, Dillon V . Genome Wide Mapping of Peptidases in : Identification of Protease Gene Duplications, Horizontally Transferred Proteases and Analysis of Peptidase A1 Structures, with Considerations on Their Role in the Evolution of Hematophagy in Triatominae. Front Physiol. 2018; 8:1051. PMC: 5736985. DOI: 10.3389/fphys.2017.01051. View

2.
Chen F, Qian L, Yang Z, Huang Y, Ngo S, Ruan N . Rapsyn interaction with calpain stabilizes AChR clusters at the neuromuscular junction. Neuron. 2007; 55(2):247-60. DOI: 10.1016/j.neuron.2007.06.031. View

3.
Spadoni C, Farkas A, Sinka R, Tompa P, Friedrich P . Molecular cloning and RNA expression of a novel Drosophila calpain, Calpain C. Biochem Biophys Res Commun. 2003; 303(1):343-9. DOI: 10.1016/s0006-291x(03)00350-4. View

4.
Berni M, Mota J, Bressan D, Ribeiro L, Martins G, Pereira J . A pro-BMP function exerted by short gastrulation reveals great diversity in the role of BMP modulators during embryonic patterning. Open Biol. 2023; 13(7):230023. PMC: 10320337. DOI: 10.1098/rsob.230023. View

5.
Zhao S, Liang Z, Demko V, Wilson R, Johansen W, Olsen O . Massive expansion of the calpain gene family in unicellular eukaryotes. BMC Evol Biol. 2012; 12:193. PMC: 3563603. DOI: 10.1186/1471-2148-12-193. View