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Characterization and comparative analysis of sericin protein 150 in Bombyx mori
Bulah Chia-Hsiang Wu1,2, Valeriya Zabelina1,2, Martina Zurovcova1
1Biology Centre of the Czech Academy of Sciences, Institute of Entomology, 37005, Ceske Budejovice, Czech Republic.
Abstract:
Lepidopteran silk is a complex mixture of proteins, consisting mainly of fibroins and sericins. Sericins are a small family of highly divergent proteins that serve as adhesives and coatings for silk fibers. So far, five genes encoding sericin proteins have been identified in Bombyx mori. Having previously identified sericin protein 150 (SP150) as a major sericin-like protein in the cocoons of the pyralid moths Galleria mellonella and Ephestia kuehniella, we describe the identification of its homolog in B. mori. Our refined gene model shows that it consists of four exons and a long open reading frame with a conserved motif, CXCXCX, at the C-terminus, reminiscent of the structure observed in a class of mucin proteins. Notably, despite a similar expression pattern, both mRNA and protein levels of B. mori SP150 were significantly lower than those of its pyralid counterpart. We also discuss the synteny of homologous genes on corresponding chromosomes in different moth species and the possible phylogenetic relationships between SP150 and certain mucin-like proteins. Our results improve our understanding of silk structure and the evolutionary relationships between adhesion proteins in the silk of different lepidopteran species.
Insights
Researchers identified a sericin protein 150 (SP150) homolog in Bombyx mori silk moths. This study reveals insights into silk structure and the evolution of adhesion proteins in lepidopteran species.
Area of Science:
- Biochemistry
- Molecular Biology
- Evolutionary Biology
Background:
- Lepidopteran silk is primarily composed of fibroins and sericins.
- Sericins are divergent proteins crucial for silk fiber adhesion and coating.
- Five sericin protein genes are known in Bombyx mori.
Purpose of the Study:
- To identify the Bombyx mori homolog of sericin protein 150 (SP150).
- To investigate the structural and evolutionary relationships of SP150.
- To enhance understanding of silk structure and adhesion protein evolution.
Main Methods:
- Gene identification and characterization in Bombyx mori.
- Comparative analysis of SP150 homologs across moth species.
- Analysis of gene synteny and protein structure motifs.
Main Results:
- Identification of a Bombyx mori SP150 homolog with a conserved CXCXCX motif.
- Bombyx mori SP150 exhibited lower mRNA and protein levels compared to its pyralid counterparts.
- Discussion of conserved synteny and potential phylogenetic links to mucin-like proteins.
Conclusions:
- The study refines the understanding of silk protein composition and structure.
- It provides insights into the evolutionary divergence of sericin proteins.
- The findings contribute to the knowledge of adhesion protein evolution in Lepidoptera.

