Finding Species-Specific Extracellular Surface-Facing Proteomes in Toxic Dinoflagellates

As a sequel to our previous report of the existence of species-specific protein/peptide expression profiles (PEPs) acquired by mass spectrometry in some dinoflagellates, we established, with the help of a plasma-membrane-impermeable labeling agent, a surface amphiesmal protein extraction method (SAP...

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Veröffentlicht in:Toxins 2021-09, Vol.13 (9), p.624
Hauptverfasser: Chan, Kenrick Kai-Yuen, Kong, Hang-Kin, Tse, Sirius Pui-Kam, Chan, Zoe, Lo, Pak-Yeung, Kwok, Kevin W H, Lo, Samuel Chun-Lap
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Sprache:eng
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Zusammenfassung:As a sequel to our previous report of the existence of species-specific protein/peptide expression profiles (PEPs) acquired by mass spectrometry in some dinoflagellates, we established, with the help of a plasma-membrane-impermeable labeling agent, a surface amphiesmal protein extraction method (SAPE) to label and capture species-specific surface proteins (SSSPs) as well as saxitoxins-producing-species-specific surface proteins (Stx-SSPs) that face the extracellular space (i.e., SSSPs and Stx-SSPs ). Five selected toxic dinoflagellates, , and were used in this study. Transcriptomic databases of these five species were also constructed. With the aid of liquid chromatography linked-tandem mass spectrometry (LC-MS/MS) and the transcriptomic databases of these species, extracellularly facing membrane proteomes of the five different species were identified. Within these proteomes, 16 extracellular-facing and functionally significant transport proteins were found. Furthermore, 10 SSSPs and 6 Stx-SSPs were identified as amphiesmal proteins but not facing outward to the extracellular environment. We also found SSSPs and Stx-SSPs in the proteomes. The potential functional correlation of these proteins towards the production of saxitoxins in dinoflagellates and the degree of species specificity were discussed accordingly.
ISSN:2072-6651
2072-6651
DOI:10.3390/toxins13090624