David Goldstone

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Associate Professor

University of Auckland
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New Zealand

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David Goldstone is an Associate Professor at The University of Auckland, New Zealand. His research primarily focuses on protein interactions, biomolecular complexes, and the development of anticancer agents. Recent articles explore various topics including protease mimicry, metal-drug adducts, and the anticancer properties of platinum complexes. He is dedicated to advancing the understanding of protein behavior and the therapeutic potential of novel compounds.

Recent Grants

Grant: Close

Trimming retroviral infection: Structural investigations of TRIM protein function

Open Date: 2012-01-01

Close Date: 2017-01-01

Articles (13)

The Leptospermum scoparium (Mānuka)-Specific Nectar and Honey Compound 3,6,7-Trimethyllumazine (LepteridineTM) That Inhibits Matrix Metalloproteinase 9 (MMP-9) Activity

3,6,7-trimethyllumazine (Lepteridine™) is a newly discovered natural pteridine derivative unique to Mānuka (Leptospermum scoparium) nectar and honey, with no previously reported biological activity. Pteridine derivative-based medicines, such as methotrexate, are used to treat auto-immune and inflammatory diseases, and Mānuka honey reportedly possesses anti-inflammatory properties and is used topically as a wound dressing. MMP-9 is a potential candidate protein target as it is upregulated in recalcitrant wounds and intestinal inflammation. Using gelatin zymography, 40 μg/mL LepteridineTM inhibited the gelatinase activities of both pro- (22%, p < 0.0001) and activated (59%, p < 0.01) MMP-9 forms. By comparison, LepteridineTM exerted modest (~10%) inhibition against a chromogenic peptide substrate and no effect against a fluorogenic peptide substrate. These findings suggest that LepteridineTM may not interact within the catalytic domain of MMP-9 and exerts a negligible effect on the active site hydrolysis of small soluble peptide substrates. Instead, the findings implicate fibronectin II domain interactions by LepteridineTM which impair gelatinase activity, possibly through perturbed tethering of MMP-9 to the gelatin matrix. Molecular modelling analyses were equivocal over interactions at the S1′ pocket versus the fibronectin II domain, while molecular dynamic calculations indicated rapid exchange kinetics. No significant degradation of synthetic or natural LepteridineTM in Mānuka honey occurred during simulated gastrointestinal digestion. MMP-9 regulates skin and gastrointestinal inflammatory responses and extracellular matrix remodelling. These results potentially implicate LepteridineTM bioactivity in Mānuka honey’s reported beneficial effects on wound healing via topical application and anti-inflammatory actions in gastrointestinal disorder models via oral consumption.

Year:

2023

Collaborators (12)

Matthew Sullivan

University of Auckland

NEW ZEALAND

Jeremy Keown

University of Warwick

UNITED KINGDOM

Margaret Brimble

Distinguished Professor

University of Auckland

NEW ZEALAND

Davide Mercadante

Senior Lecturer

University of Auckland

NEW ZEALAND

Ivanhoe Leung

Senior Lecturer

University of Melbourne

AUSTRALIA

Kerry M. Loomes

University of Auckland

NEW ZEALAND

Monika Cziferszky

University of Innsbruck

AUSTRIA

Yunyuan Sun

University of Glasgow

UNITED KINGDOM

isabelle lucet

Division Head

Walter and Eliza Hall Institute of Medical Research

AUSTRALIA

Muhammad Hanif

University of Auckland

NEW ZEALAND

Christian Hartinger

University of Auckland

NEW ZEALAND

Dianna Truong

Graduate Teaching Assistant

University of Auckland

NEW ZEALAND
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