Understanding Diversity, Evolution, and Structure of Small Heat Shock Proteins in Annelida Through in Silico Analyses
Basic science published in Front Physiol (2022)
Abstract
Small heat shock proteins (sHsps) are oligomeric stress proteins characterized by an α-crystallin domain (ACD). These proteins are localized in different subcellular compartments and play critical roles in the stress physiology of tissues, organs, and whole multicellular eukaryotes. They are ubiquitous proteins found in all living organisms, from bacteria to mammals, but they have never been studied in annelids. Here, a data set of 23 species spanning the annelid tree of life, including mostly transcriptomes but also two genomes, was interrogated and 228 novel putative sHsps were identified and manually curated. The analysis revealed very high protein diversity and showed that a significant number of sHsps have a particular dimeric architecture consisting of two tandemly repeated ACDs. The phylogenetic analysis distinguished three main clusters, two of them containing both monomeric sHsps, and ACDs located downstream in the dimeric sHsps, and the other one comprising the upstream ACDs from those dimeric forms. Our results support an evolutionary history of these proteins based on duplication events prior to the Spiralia split. Monomeric sHsps 76) were further divided into five subclusters. Physicochemical properties, subcellular location predictions, and sequence conservation analyses provided insights into the differentiating elements of these putative functional groups. Strikingly, three of those subclusters included sHsps with features typical of metazoans, while the other two presented characteristics resembling non-metazoan proteins. This study provides a solid background for further research on the diversity, evolution, and function in the family of the sHsps. The characterized annelid sHsps are disclosed as essential for improving our understanding of this important family of proteins and their pleotropic functions. The features and the great diversity of annelid sHsps position them as potential powerful molecular biomarkers of environmental stress for acting as prognostic tool in a diverse range of environments.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Resumen
228 small heat shock proteins identified across 23 annelid species including leeches reveal dimeric ACD architectures and three phylogenetic clusters supporting environmental stress biomarker potential.
Por qué esto importa para la hirudoterapia
Este estudio in silico interrogó transcriptomas y genomas de 23 especies de anélidos para identificar y caracterizar 228 nuevas proteínas de choque térmico pequeñas (sHsps), revelando una alta diversidad, una arquitectura distintiva de dominio α-cristalino duplicado en tándem en muchas secuencias, tres clados filogenéticos principales y características fisicoquímicas y subcelulares que podrían servir como biomarcadores de estrés ambiental. El trabajo solo tiene relevancia indirecta para ASH: versa sobre la biología de los anélidos en sentido amplio y no se distingue por separado a las sanguijuelas medicinales (Hirudo), ni se examinan componentes del secretoma o de la hirudoterapia. La advertencia honesta es que se trata de un estudio computacional y evolutivo sin contenido de laboratorio húmedo, secretoma, farmacología ni clínica, por lo que su relevancia práctica para la hirudoterapia se limita a la biología fundamental de los anélidos.
Citación
Understanding Diversity, Evolution, and Structure of Small Heat Shock Proteins in Annelida Through in Silico Analyses.
de la Fuente M, Novo M · Frontiers in physiology, 2022
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Añadido a la biblioteca ASH: May 27, 2026 · Última actualización del sitio: 18 de junio de 2026