Literature DB >> 27476034

A combined proteomic and transcriptomic analysis of slime secreted by the southern bottletail squid, Sepiadarium austrinum (Cephalopoda).

Nikeisha J Caruana1, Ira R Cooke2, Pierre Faou3, Julian Finn4, Nathan E Hall5, Mark Norman4, Sandy S Pineda6, Jan M Strugnell7.   

Abstract

UNLABELLED: Sepiadarium austrinum, the southern bottletail squid, is a small squid that inhabits soft sediments along Australia's south-east coast. When provoked, it rapidly secretes large volumes of slime, presumably as a form of chemical defense. We analyzed the proteomic composition of this slime using tandem mass spectrometry and transcriptomics and found that it was remarkably complex with 1735 identified protein groups (FDR:0.01). To investigate the chemical defense hypothesis we performed an Artemia toxicity assay and used sequence analysis to search for toxin-like molecules. Although the slime did not appear to be toxic to Artemia we found 13 proteins in slime with the hallmarks of toxins, namely cysteine richness, short length, a signal peptide and/or homology to known toxins. These included three short (80-130AA) cysteine rich secreted proteins with no homology to proteins on the NCBI or UniProt databases. Other protein families found included, CAP, phospholipase-B, ShKT-like peptides, peptidase S10, Kunitz BPTI and DNase II. Quantitative analysis using intensity based absolute quantification (iBAQ via MaxQuant) revealed 20 highly abundant proteins, accounting for 67% of iBAQ signal, and three of these were toxin-like. No mucin homologues were found suggesting that the structure of the slime gel may be formed by an unknown mechanism. BIOLOGICAL SIGNIFICANCE: This study is the first known instance of a slime secretion from a cephalopod to be analyzed by proteomics methods and is the first investigation of a member of the family Sepiadariidae using proteomic methods. 1735 proteins were identified with 13 of these fitting criteria established for the identification of putative toxins. The slime is dominated by 20 highly abundant proteins with secreted, cysteine rich proteins. The study highlights the importance of 'omics approaches in understanding novel organisms.
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cephalopod; Proteogenomics; Proteomics; Slime; Squid; Transcriptomics

Mesh:

Substances:

Year:  2016        PMID: 27476034     DOI: 10.1016/j.jprot.2016.07.026

Source DB:  PubMed          Journal:  J Proteomics        ISSN: 1874-3919            Impact factor:   4.044


  6 in total

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2.  Proteomics in non-human primates: utilizing RNA-Seq data to improve protein identification by mass spectrometry in vervet monkeys.

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Review 3.  Bio-based and bio-inspired adhesives from animals and plants for biomedical applications.

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4.  Endogenous Fluorescent Proteins in the Mucus of an Intertidal Polychaeta: Clues for Biotechnology.

Authors:  Ana P Rodrigo; Ana Lopes; Ricardo Pereira; Sandra I Anjo; Bruno Manadas; Ana R Grosso; Pedro V Baptista; Alexandra R Fernandes; Pedro M Costa
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5.  Phylogenomics illuminates the evolution of bobtail and bottletail squid (order Sepiolida).

Authors:  Gustavo Sanchez; Fernando Á Fernández-Álvarez; Morag Taite; Chikatoshi Sugimoto; Jeffrey Jolly; Oleg Simakov; Ferdinand Marlétaz; Louise Allcock; Daniel S Rokhsar
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6.  Comparative Proteomics Enables Identification of Nonannotated Cold Shock Proteins in E. coli.

Authors:  Nadia G D'Lima; Alexandra Khitun; Aaron D Rosenbloom; Peijia Yuan; Brandon M Gassaway; Karl W Barber; Jesse Rinehart; Sarah A Slavoff
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  6 in total

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