Logo do repositório
 
A carregar...
Miniatura
Publicação

A transcriptomic approach to the metabolism of tetrapyrrolic photosensitizers in a marine annelid

Utilize este identificador para referenciar este registo.
Nome:Descrição:Tamanho:Formato: 
molecules_26_03924.pdf5.67 MBAdobe PDF Ver/Abrir

Orientador(es)

Resumo(s)

The past decade has seen growing interest in marine natural pigments for biotechnological applications. One of the most abundant classes of biological pigments is the tetrapyrroles, which are prized targets due their photodynamic properties; porphyrins are the best known examples of this group. Many animal porphyrinoids and other tetrapyrroles are produced through heme metabolic pathways, the best known of which are the bile pigments biliverdin and bilirubin. Eulalia is a marine Polychaeta characterized by its bright green coloration resulting from a remarkably wide range of greenish and yellowish tetrapyrroles, some of which have promising photodynamic properties. The present study combined metabolomics based on HPLC-DAD with RNA-seq transcriptomics to investigate the molecular pathways of porphyrinoid metabolism by comparing the worm’s proboscis and epidermis, which display distinct pigmentation patterns. The results showed that pigments are endogenous and seemingly heme-derived. The worm possesses homologs in both organs for genes encoding enzymes involved in heme metabolism such as ALAD, FECH, UROS, and PPOX. However, the findings also indicate that variants of the canonical enzymes of the heme biosynthesis pathway can be species-and organ-specific. These differences between molecular networks contribute to explain not only the differential pigmentation patterns between organs, but also the worm’s variety of novel endogenous tetrapyrrolic compounds.

Descrição

FA_05_2017_007 UID/Multi/04378/2020 UID/QUI/50006/2020

Palavras-chave

Annelida Bile pigments Bioinformatics Heme Photodynamic Porphyrin metabolism Analytical Chemistry Chemistry (miscellaneous) Molecular Medicine Pharmaceutical Science Drug Discovery Physical and Theoretical Chemistry Organic Chemistry SDG 14 - Life Below Water

Contexto Educativo

Citação

Projetos de investigação

Projeto de investigaçãoVer mais

Unidades organizacionais

Fascículo