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Boniecki Michal Tadeusz
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Structure and functional dynamics of the mitochondrial Fe/S cluster synthesis complex
MT Boniecki, SA Freibert, U Mühlenhoff, R Lill, M Cygler
Nature communications 8 (1), 1287, 2017
1672017
Naturally occurring aminoacyl-tRNA synthetases editing-domain mutations that cause mistranslation in Mycoplasma parasites
L Li, MT Boniecki, JD Jaffe, BS Imai, PM Yau, ZA Luthey-Schulten, ...
Proceedings of the National Academy of Sciences 108 (23), 9378-9383, 2011
1352011
The balance between pre-and post-transfer editing in tRNA synthetases
SA Martinis, MT Boniecki
FEBS letters 584 (2), 455-459, 2010
1142010
CP1-dependent partitioning of pretransfer and posttransfer editing in leucyl-tRNA synthetase
MT Boniecki, MT Vu, AK Betha, SA Martinis
Proceedings of the National Academy of Sciences 105 (49), 19223-19228, 2008
1122008
New ulvan-degrading polysaccharide lyase family: structure and catalytic mechanism suggests convergent evolution of active site architecture
TS Ulaganathan, MT Boniecki, E Foran, V Buravenkov, N Mizrachi, ...
ACS Chemical Biology 12 (5), 1269-1280, 2017
592017
Molecular basis for the binding and modulation of V-ATPase by a bacterial effector protein
J Zhao, K Beyrakhova, Y Liu, CP Alvarez, SA Bueler, L Xu, C Xu, ...
PLoS pathogens 13 (6), e1006394, 2017
542017
In vitro assays for the determination of aminoacyl-tRNA synthetase editing activity
KE Splan, K Musier-Forsyth, MT Boniecki, SA Martinis
Methods 44 (2), 119-128, 2008
522008
A viable amino acid editing activity in the leucyl-tRNA synthetase CP1-splicing domain is not required in the yeast mitochondria
VA Karkhanis, MT Boniecki, K Poruri, SA Martinis
Journal of biological chemistry 281 (44), 33217-33225, 2006
462006
Yeast mitochondrial leucyl-tRNA synthetase CP1 domain has functionally diverged to accommodate RNA splicing at expense of hydrolytic editing
J Sarkar, K Poruri, MT Boniecki, KK McTavish, SA Martinis
Journal of Biological Chemistry 287 (18), 14772-14781, 2012
312012
N-terminal tyrosine of ISCU2 triggers [2Fe-2S] cluster synthesis by ISCU2 dimerization
SA Freibert, MT Boniecki, C Stümpfig, V Schulz, N Krapoth, DR Winge, ...
Nature Communications 12 (1), 6902, 2021
202021
Leucyl-tRNA synthetase editing domain functions as a molecular rheostat to control codon ambiguity in Mycoplasma pathogens
L Li, A Palencia, T Lukk, Z Li, ZA Luthey-Schulten, S Cusack, SA Martinis, ...
Proceedings of the National Academy of Sciences 110 (10), 3817-3822, 2013
172013
Coordination of tRNA synthetase active sites for chemical fidelity
MT Boniecki, SA Martinis
Journal of Biological Chemistry 287 (14), 11285-11289, 2012
162012
The Legionella kinase LegK7 exploits the Hippo pathway scaffold protein MOB1A for allostery and substrate phosphorylation
PC Lee, K Beyrakhova, C Xu, MT Boniecki, MH Lee, CJ Onu, AM Grishin, ...
Proceedings of the National Academy of Sciences 117 (25), 14433-14443, 2020
152020
Leucyl-tRNA synthetase-dependent and-independent activation of a group I intron
MT Boniecki, SB Rho, M Tukalo, JL Hsu, EP Romero, SA Martinis
Journal of biological chemistry 284 (39), 26243-26250, 2009
142009
The structure of Legionella effector protein LpnE provides insights into its interaction with Oculocerebrorenal syndrome of Lowe (OCRL) protein
KA Voth, IYW Chung, K van Straaten, L Li, MT Boniecki, M Cygler
The FEBS Journal 286 (4), 710-725, 2019
132019
Structural and functional investigations of the effector protein LpiR1 from Legionella pneumophila
KA Beyrakhova, K van Straaten, L Li, MT Boniecki, DH Anderson, ...
Journal of Biological Chemistry 291 (30), 15767-15777, 2016
42016
MEMO1 is a Metal Containing Regulator of Iron Homeostasis in Cancer Cells
N Dolgova, EME Uhlemann, MT Boniecki, FS Vizeacoumar, M Ralle, ...
bioRxiv, 2023.02. 28.530460, 2023
12023
MEMO1 is a metal containing regulator of iron homeostasis in the cell
N Dolgova, EME Uhlemann, MT Boniecki, FS Vizeacoumar, M Ralle, ...
Available at SSRN 4084075, 0
1
MEMO1 binds iron and modulates iron homeostasis in cancer cells
N Dolgova, EME Uhlemann, MT Boniecki, FS Vizeacoumar, A Ara, ...
Elife 13, e86354, 2024
2024
Helicobacter pylori FlgN binds its substrate FlgK and the flagellum ATPase FliI in a similar manner observed for the FliT chaperone
P Dhindwal, MT Boniecki, SA Moore
Protein Science 33 (2), e4882, 2024
2024
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Articles 1–20