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Katrin Ackermann

Explore the profile of Katrin Ackermann including associated specialties, affiliations and a list of published articles. Areas
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Articles 47
Citations 902
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Recent Articles
1.
Sutherland E, Harding C, du Monceau de Bergendal T, Florence G, Ackermann K, Bode B, et al.
Nat Commun . 2025 Jan; 16(1):995. PMID: 39856061
Cyclic dipeptides are produced by organisms across all domains of life, with many exhibiting anticancer and antimicrobial properties. Oxidations are often key to their biological activities, particularly C-C bond oxidation...
2.
Ammala A, Hancox T, Qiuyu F, Lahtinen A, Sulkava S, Revell V, et al.
J Sleep Res . 2024 Dec; :e14438. PMID: 39675927
Numerous hormones and genes exhibit diurnal 24-hr rhythms that can also be affected by sleep deprivation. Here we studied diurnal rhythms in DNA methylation under a 24-hr sleep/wake cycle and...
3.
Remmel L, Meyer A, Ackermann K, Hagelueken G, Bennati M, Bode B
Angew Chem Int Ed Engl . 2024 Sep; 63(49):e202411241. PMID: 39225197
Riboswitches control gene regulation upon external stimuli such as environmental factors or ligand binding. The fluoride sensing riboswitch from Thermotoga petrophila is a complex regulatory RNA proposed to be involved...
4.
Ackermann K, Wu D, Stewart A, Bode B
Dalton Trans . 2024 Jul; 53(32):13529-13536. PMID: 39072685
Human serum albumin (HSA) is the most abundant plasma protein, which functions to transport a large range of ligands within the circulation. These interactions have important implications for human health...
5.
Lane B, Ma Y, Yan N, Wang B, Ackermann K, Karamanos T, et al.
Structure . 2024 Mar; 32(6):739-750.e4. PMID: 38521071
Membrane forces shift the equilibria of mechanosensitive channels enabling them to convert mechanical cues into electrical signals. Molecular tools to stabilize and methods to capture their highly dynamic states are...
6.
Gruschow S, McQuarrie S, Ackermann K, McMahon S, Bode B, Gloster T, et al.
Nucleic Acids Res . 2024 Mar; 52(6):2761-2775. PMID: 38471818
CRISPR-Cas provides adaptive immunity in prokaryotes. Type III CRISPR systems detect invading RNA and activate the catalytic Cas10 subunit, which generates a range of nucleotide second messengers to signal infection....
7.
Vitali V, Ackermann K, Hagelueken G, Bode B
Appl Magn Reson . 2024 Feb; 55(1-3):187-205. PMID: 38357007
Supplementary Information: The online version contains supplementary material available at 10.1007/s00723-023-01611-1.
8.
Ackermann K, Heubach C, Schiemann O, Bode B
J Phys Chem Lett . 2024 Jan; 15(5):1455-1461. PMID: 38294197
Recent sensitivity enhancements in pulse dipolar electron paramagnetic resonance spectroscopy (PDS) have afforded distance measurements at submicromolar spin concentrations. This development opens the path for new science as more biomolecular...
9.
McQuarrie S, Athukoralage J, McMahon S, Graham S, Ackermann K, Bode B, et al.
Nucleic Acids Res . 2023 Sep; 51(19):10590-10605. PMID: 37747760
Type III CRISPR systems synthesize cyclic oligoadenylate (cOA) second messengers as part of a multi-faceted immune response against invading mobile genetic elements (MGEs). cOA activates non-specific CRISPR ancillary defence nucleases...
10.
Wort J, Ackermann K, Giannoulis A, Bode B
J Magn Reson . 2023 May; 352:107460. PMID: 37167826
Pulse dipolar EPR spectroscopy (PDS) measurements are an important complementary tool in structural biology and are increasingly applied to macromolecular assemblies implicated in human health and disease at physiological concentrations....