Jonathan T S Hopper
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Explore the profile of Jonathan T S Hopper including associated specialties, affiliations and a list of published articles.
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32
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1224
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Recent Articles
1.
Toporowska J, Kapoor P, Musgaard M, Gherbi K, Sengmany K, Qu F, et al.
Nat Commun
. 2024 Oct;
15(1):8993.
PMID: 39424782
G Protein Coupled Receptors (GPCRs) constitute the largest family of signalling proteins responsible for translating extracellular stimuli into intracellular functions. They play crucial roles in numerous physiological processes and are...
2.
Sokratous K, Cooper-Shepherd D, Ujma J, Qu F, Giles K, Ben-Younis A, et al.
J Am Soc Mass Spectrom
. 2024 Jul;
35(8):1891-1901.
PMID: 39007842
Native mass spectrometry (MS) is proving to be a disruptive technique for studying the interactions of proteins, necessary for understanding the functional roles of these biomolecules. Recent research is expanding...
3.
Lloyd J, Biasutto A, Durr K, Jazayeri A, Hopper J, Oldham N
JACS Au
. 2023 Jul;
3(7):2025-2035.
PMID: 37502151
Carbene footprinting is a recently developed mass spectrometry-based chemical labeling technique that probes protein interactions and conformation. Here, we use the methodology to investigate binding interactions between the protease human...
4.
Yen H, Liko I, Song W, Kapoor P, Almeida F, Toporowska J, et al.
Nat Chem
. 2022 Nov;
14(12):1375-1382.
PMID: 36357787
G-protein-coupled receptors signal through cognate G proteins. Despite the widespread importance of these receptors, their regulatory mechanisms for G-protein selectivity are not fully understood. Here we present a native mass...
5.
Abramsson M, Sahin C, Hopper J, Branca R, Danielsson J, Xu M, et al.
JACS Au
. 2022 Jan;
1(12):2385-2393.
PMID: 34977906
In solution, the charge of a protein is intricately linked to its stability, but electrospray ionization distorts this connection, potentially limiting the ability of native mass spectrometry to inform about...
6.
Cohen-Khait R, Harmalkar A, Pham P, Webby M, Housden N, Elliston E, et al.
mBio
. 2021 Sep;
12(5):e0178721.
PMID: 34544275
Colicins are protein antibiotics deployed by Escherichia coli to eliminate competing strains. Colicins frequently exploit outer membrane (OM) nutrient transporters to penetrate the selectively permeable bacterial cell envelope. Here, by...
7.
Jansen K, Inns P, Housden N, Hopper J, Kaminska R, Lee S, et al.
J Biol Chem
. 2020 May;
295(27):9147-9156.
PMID: 32398259
Colicins are specific bacteriocins that translocate across the outer bacterial membrane by a poorly understood mechanism. Group A colicins typically parasitize the proton-motive force-linked Tol system in the inner membrane...
8.
Bolla J, Corey R, Sahin C, Gault J, Hummer A, Hopper J, et al.
Angew Chem Int Ed Engl
. 2019 Dec;
59(9):3523-3528.
PMID: 31886601
Membrane proteins engage in a variety of contacts with their surrounding lipids, but distinguishing between specifically bound lipids, and non-specific, annular interactions is a challenging problem. Applying native mass spectrometry...
9.
Liko I, Degiacomi M, Lee S, Newport T, Gault J, Reading E, et al.
Proc Natl Acad Sci U S A
. 2018 Jun;
115(26):6691-6696.
PMID: 29891712
Strong interactions between lipids and proteins occur primarily through association of charged headgroups and amino acid side chains, rendering the protonation status of both partners important. Here we use native...
10.
Gupta K, Li J, Liko I, Gault J, Bechara C, Wu D, et al.
Nat Protoc
. 2018 Apr;
13(5):1106-1120.
PMID: 29700483
With the recent success in determining membrane protein structures, further detailed understanding of the identity and function of the bound lipidome is essential. Using an approach that combines high-energy native...