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John H Beale

Explore the profile of John H Beale including associated specialties, affiliations and a list of published articles. Areas
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Articles 19
Citations 249
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Recent Articles
1.
Le Bas A, Clarke B, Teelucksingh T, Lee M, El Omari K, Giltrap A, et al.
Open Biol . 2025 Jan; 15(1):240310. PMID: 39772807
The enterobacterial common antigen (ECA) is conserved in Gram-negative bacteria of the order although its function is debated. ECA biogenesis depends on the Wzx/Wzy-dependent strategy whereby the newly synthesized lipid-linked...
2.
Gotthard G, Flores-Ibarra A, Carrillo M, Kepa M, Mason T, Stegmann D, et al.
IUCrJ . 2024 Jul; 11(Pt 5):749-761. PMID: 38980142
X-ray free-electron laser (XFEL) light sources have enabled the rapid growth of time-resolved structural experiments, which provide crucial information on the function of macromolecules and their mechanisms. Here, the aim...
3.
Wranik M, Kepa M, Beale E, James D, Bertrand Q, Weinert T, et al.
Nat Commun . 2023 Dec; 14(1):7956. PMID: 38042952
Serial crystallography at X-ray free-electron lasers (XFELs) permits the determination of radiation-damage free static as well as time-resolved protein structures at room temperature. Efficient sample delivery is a key factor...
4.
Christou N, Apostolopoulou V, Melo D, Ruppert M, Fadini A, Henkel A, et al.
Science . 2023 Nov; 382(6674):1015-1020. PMID: 38033070
Photolyase is an enzyme that uses light to catalyze DNA repair. To capture the reaction intermediates involved in the enzyme's catalytic cycle, we conducted a time-resolved crystallography experiment. We found...
5.
Carrillo M, Mason T, Karpik A, Martiel I, Kepa M, McAuley K, et al.
IUCrJ . 2023 Sep; 10(Pt 6):678-693. PMID: 37727961
Fixed targets are a popular form of sample-delivery system used in serial crystallography at synchrotron and X-ray free-electron laser sources. They offer a wide range of sample-preparation options and are...
6.
Owen R, de Sanctis D, Pearson A, Beale J
Acta Crystallogr D Struct Biol . 2023 Jul; 79(Pt 8):668-672. PMID: 37463110
Fixed-target crystallography has become a widely used approach for serial crystallography at both synchrotron and X-ray free-electron laser (XFEL) sources. A plethora of fixed targets have been developed at different...
7.
Moreno-Chicano T, Carey L, Axford D, Beale J, Doak R, Duyvesteyn H, et al.
IUCrJ . 2022 Sep; 9(Pt 5):610-624. PMID: 36071813
Room-temperature macromolecular crystallography allows protein structures to be determined under close-to-physiological conditions, permits dynamic freedom in protein motions and enables time-resolved studies. In the case of metalloenzymes that are highly...
8.
Huang C, Aumonier S, Engilberge S, Eris D, Smith K, Leonarski F, et al.
Acta Crystallogr D Struct Biol . 2022 Aug; 78(Pt 8):964-974. PMID: 35916221
Continuous developments in cryogenic X-ray crystallography have provided most of our knowledge of 3D protein structures, which has recently been further augmented by revolutionary advances in cryoEM. However, a single...
9.
Martiel I, Beale J, Karpik A, Huang C, Vera L, Olieric N, et al.
Acta Crystallogr D Struct Biol . 2021 Sep; 77(Pt 9):1153-1167. PMID: 34473086
Serial data collection has emerged as a major tool for data collection at state-of-the-art light sources, such as microfocus beamlines at synchrotrons and X-ray free-electron lasers. Challenging targets, characterized by...
10.
Butryn A, Simon P, Aller P, Hinchliffe P, Massad R, Leen G, et al.
Nat Commun . 2021 Jul; 12(1):4461. PMID: 34294694
Serial femtosecond crystallography has opened up many new opportunities in structural biology. In recent years, several approaches employing light-inducible systems have emerged to enable time-resolved experiments that reveal protein dynamics...