Literature DB >> 35050597

α-Synuclein Aggregation Inhibitory Prunolides and a Dibrominated β-Carboline Sulfamate from the Ascidian Synoicum prunum.

Darren C Holland1,2, Dale W Prebble1,2, Safak Er3,4, Joshua B Hayton1,2, Luke P Robertson1,2, Vicky M Avery1,2,5, Andrii Domanskyi3, Milton J Kiefel1,6, John N A Hooper7, Anthony R Carroll1,2.   

Abstract

Seven new polyaromatic bis-spiroketal-containing butenolides, the prunolides D-I (4-9) and cis-prunolide C (10), a new dibrominated β-carboline sulfamate named pityriacitrin C (11), alongside the known prunolides A-C (1-3) were isolated from the Australian colonial ascidian Synoicum prunum. The prunolides D-G (4-7) represent the first asymmetrically brominated prunolides, while cis-prunolide C (10) is the first reported with a cis-configuration about the prunolide's bis-spiroketal core. The prunolides displayed binding activities with the Parkinson's disease-implicated amyloid protein α-synuclein in a mass spectrometry binding assay, while the prunolides (1-5 and 10) were found to significantly inhibit the aggregation (>89.0%) of α-synuclein in a ThT amyloid dye assay. The prunolides A-C (1-3) were also tested for inhibition of pSyn aggregate formation in a primary embryonic mouse midbrain dopamine neuron model with prunolide B (2) displaying statistically significant inhibitory activity at 0.5 μM. The antiplasmodial and antibacterial activities of the isolates were also examined with prunolide C (3) displaying only weak activity against the 3D7 parasite strain of Plasmodium falciparum. Our findings reported herein suggest that the prunolides could provide a novel scaffold for the exploration of future therapeutics aimed at inhibiting amyloid protein aggregation and the treatment of numerous neurodegenerative diseases.

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Year:  2022        PMID: 35050597     DOI: 10.1021/acs.jnatprod.1c01172

Source DB:  PubMed          Journal:  J Nat Prod        ISSN: 0163-3864            Impact factor:   4.050


  1 in total

1.  New Glycosylated Secondary Metabolites from Marine-Derived Bacteria.

Authors:  Cao Van Anh; Jong Soon Kang; Hwa-Sun Lee; Phan Thi Hoai Trinh; Chang-Su Heo; Hee Jae Shin
Journal:  Mar Drugs       Date:  2022-07-20       Impact factor: 6.085

  1 in total

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