Staff profile
Overview
https://apps.dur.ac.uk/biography/image/1106
Affiliation |
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Assistant Professor (Research) in the Department of Chemistry |
Biography
Daphne Jackson Fellowship 2009 - 2011
Research interests
- Biophysical Methods
- Crystallography
- Molecular Biology
Publications
Journal Article
- Independent Membrane Binding Properties of the Caspase Generated Fragments of the Beaded Filament Structural Protein 1 (BFSP1) Involves an Amphipathic HelixJarrin, M., Kalligeraki, A. A., Uwineza, A., Cawood, C. S., Brown, A. P., Ward, E. N., Le, K., Freitag-Pohl, S., Pohl, E., Kiss, B., Tapodi, A., & Quinlan, R. A. (2023). Independent Membrane Binding Properties of the Caspase Generated Fragments of the Beaded Filament Structural Protein 1 (BFSP1) Involves an Amphipathic Helix. Cells, 12(12), Article 1580. https://doi.org/10.3390/cells12121580
- AmiP from hyperthermophilic Thermus parvatiensis prophage is a thermoactive and ultrathermostable peptidoglycan lytic amidaseJasilionis, A., Plotka, M., Wang, L., Dorawa, S., Lange, J., Watzlawick, H., van den Bergh, T., Vroling, B., Altenbuchner, J., Kaczorowska, A., Pohl, E., Kaczorowski, T., Nordberg Karlsson, E., & Freitag‐Pohl, S. (2023). AmiP from hyperthermophilic Thermus parvatiensis prophage is a thermoactive and ultrathermostable peptidoglycan lytic amidase. Protein Science, 32(3), Article e4585. https://doi.org/10.1002/pro.4585
- Cysteine synthase: multiple structures of a key enzyme in cysteine synthesis and a potential drug target for Chagas disease and leishmaniasisSowerby, K., Freitag-Pohl, S., Murillo, A. M., Silber, A. M., & Pohl, E. (2023). Cysteine synthase: multiple structures of a key enzyme in cysteine synthesis and a potential drug target for Chagas disease and leishmaniasis. Acta Crystallographica Section D Structural Biology, 79(6), 518-530. https://doi.org/10.1107/s2059798323003613
- Derisking the Polymorph Landscape: The Complex Polymorphism of Mexiletine HydrochlorideAndrews, J. L., Nilsson Lill, S. O., Freitag-Pohl, S., Apperley, D. C., Yufit, D. S., Batsanov, A. S., Mulvee, M. T., Edkins, K., McCabe, J. F., Berry, D. J., Probert, M. R., & Steed, J. W. (2021). Derisking the Polymorph Landscape: The Complex Polymorphism of Mexiletine Hydrochloride. Crystal Growth & Design, 21(12), 7150-7167. https://doi.org/10.1021/acs.cgd.1c01009
- Flavonoid-based inhibitors of the Phi-class glutathione transferase from black-grass to combat multiple herbicide resistanceSchwarz, M., Eno, R. F., Freitag-Pohl, S., Coxon, C. R., Straker, H. E., Wortley, D. J., Hughes, D. J., Mitchell, G., Moore, J., Cummins, I., Onkokesung, N., Brazier-Hicks, M., Edwards, R., Pohl, E., & Steel, P. G. (2021). Flavonoid-based inhibitors of the Phi-class glutathione transferase from black-grass to combat multiple herbicide resistance. Organic & Biomolecular Chemistry, 19(42), 9211-9222. https://doi.org/10.1039/d1ob01802g
- Going to extremes - a metagenomic journey into the dark matter of lifeAevarsson, A., Kaczorowska, A.-K., Adalsteinsson, B. T., Ahlqvist, J., Al-Karadaghi, S., Altenbuchner, J., Arsin, H., Atlasson, U. A., Brandt, D., Cichowicz-Cieslak, M., Cornish, K. A., Courtin, J., Dabrowski, S., Dahle, H., Djeffane, S., Dorawa, S., Dusaucy, J., Enault, F., Fedoy, A.-E., … Zhang, R. (2021). Going to extremes - a metagenomic journey into the dark matter of life. FEMS Microbiology Letters, 368(12), Article fnab067. https://doi.org/10.1093/femsle/fnab067
- Chalcones identify cTXNPx as a potential antileishmanial drug targetEscrivani, D. O., Charlton, R. L., Caruso, M. B., Burle-Caldas, G. A., Borsodi, M. P. G., Zingali, R. B., Arruda-Costa, N., Palmeira-Mello, M. V., de Jesus, J. B., Souza, A. M., Abrahim-Vieira, B., Freitag-Pohl, S., Pohl, E., Denny, P. W., Rossi-Bergmann, B., & Steel, P. G. (2021). Chalcones identify cTXNPx as a potential antileishmanial drug target. PLOS Neglected Tropical Diseases, 15(11), Article e0009951. https://doi.org/10.1371/journal.pntd.0009951
- Crystal structure of the GDP-bound GTPase domain of Rab5a from Leishmania donovaniZohib, M., Maheshwari, D., Pal, R. K., Freitag-Pohl, S., Biswal, B. K., Pohl, E., & Arora, A. (2020). Crystal structure of the GDP-bound GTPase domain of Rab5a from Leishmania donovani. ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS, 76(11), 544-556. https://doi.org/10.1017/s2053230x20013722
- Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomSFreitag-Pohl, S., Jasilionis, A., Håkansson, M., Svensson, L. A., Kovačič, R., Welin, M., Watzlawick, H., Wang, L., Altenbuchner, J., Płotka, M., Kaczorowska, A. K., Kaczorowski, T., Nordberg Karlsson, E., Al-Karadaghi, S., Walse, B., Aevarsson, A., & Pohl, E. (2019). Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS. Acta Crystallographica. Section D, Structural Biology., 75(11), 1028-1039. https://doi.org/10.1107/s2059798319013330
- How to Stabilize Protein: Stability Screens for Thermal Shift Assays and Nano Differential Scanning Fluorimetry in the Virus-X ProjectBruce, D., Cardew, E., Freitag-Pohl, S., & Pohl, E. (2019). How to Stabilize Protein: Stability Screens for Thermal Shift Assays and Nano Differential Scanning Fluorimetry in the Virus-X Project. Journal of Visualized Experiments, 144, Article e58666. https://doi.org/10.3791/58666
- Oxidation of [Li-4\(NBut)(3)S\(2)]: a new route to sulfur triimidesFleischer, R., Freitag, S., & Stalke, D. (2018). Oxidation of [Li-4\(NBut)(3)S\(2)]: a new route to sulfur triimides. Dalton Transactions, 2, 193-198. https://doi.org/10.1039/a707085c
- Multiple roles for plant glutathione transferases in xenobiotic detoxificationCummins, I., Dixon, D., Freitag-Pohl, S., Skipsey, M., & Edwards, R. (2011). Multiple roles for plant glutathione transferases in xenobiotic detoxification. Drug Metabolism Reviews, 43(2), 266-280. https://doi.org/10.3109/03602532.2011.552910
- Structural studies of hydrogen bonds in the high-affinity streptavidin-biotin complex: mutations of amino acids interacting with the ureido oxygen of biotinLe Trong, I., Freitag, S., Klumb, L., Chu, V., Stayton, P., & Stenkamp, R. (2003). Structural studies of hydrogen bonds in the high-affinity streptavidin-biotin complex: mutations of amino acids interacting with the ureido oxygen of biotin. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 59(9), 1567-1573. https://doi.org/10.1107/s0907444903014562
- Ser45 plays an important role in managing both the equilibrium and transition state energetics of the streptavidin-biotin systemHyre, D., Le Trong, I., Freitag, S., Stenkamp, R., & Stayton, P. (2000). Ser45 plays an important role in managing both the equilibrium and transition state energetics of the streptavidin-biotin system. PROTEIN SCIENCE, 9(5), 878-885. https://doi.org/10.1110/ps.9.5.878
- Atomic resolution structure of biotin-free Tyr43Phe streptavidin: what is in the binding site?Freitag, S., Le Trong, I., Klumb, L., Stayton, P., & Stenkamp, R. (1999). Atomic resolution structure of biotin-free Tyr43Phe streptavidin: what is in the binding site?. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 55(6), 1118-1126. https://doi.org/10.1107/s0907444999002322
- A structural snapshot of an intermediate on the streptavidin-biotin dissociation pathwayFreitag, S., Chu, V., Penzotti, J., Klumb, L., To, R., Hyre, D., Le Trong, I., Lybrand, T., Stenkamp, R., & Stayton, P. (1999). A structural snapshot of an intermediate on the streptavidin-biotin dissociation pathway. Proceedings of the National Academy of Sciences, 96(15), 8384-8389. https://doi.org/10.1073/pnas.96.15.8384
- Streptavidin-biotin binding energeticsStayton, P., Freitag, S., Klumb, L., Chilkoti, A., Chu, V., Penzotti, J., To, R., Hyre, D., Le Trong, I., Lybrand, T., & Stenkamp, R. (1999). Streptavidin-biotin binding energetics. BIOMOLECULAR ENGINEERING, 16(1-4), 39-44. https://doi.org/10.1016/s1050-3862%2899%2900042-x
- X-ray crystallographic studies of streptavidin mutants binding to biotinFreitag, S., Le Trong, I., Klumb, L., Chu, V., Chilkoti, A., Stayton, P., & Stenkamp, R. (1999). X-ray crystallographic studies of streptavidin mutants binding to biotin. BIOMOLECULAR ENGINEERING, 16(1-4), 13-19. https://doi.org/10.1016/s1050-3862%2899%2900048-0
- Thermodynamic and structural consequences of flexible loop deletion by circular permutation in the streptavidin-biotin systemChu, V., Freitag, S., Le Trong, I., Stenkamp, R., & Stayton, P. (1998). Thermodynamic and structural consequences of flexible loop deletion by circular permutation in the streptavidin-biotin system. PROTEIN SCIENCE, 7(4), 848-859.
- Structural studies of binding site tryptophan mutants in the high-affinity streptavidin-biotin complexFreitag, S., Le Trong, I., Chilkoti, A., Klumb, L., Stayton, P., & Stenkamp, R. (1998). Structural studies of binding site tryptophan mutants in the high-affinity streptavidin-biotin complex. JOURNAL OF MOLECULAR BIOLOGY, 279(1), 211-221. https://doi.org/10.1006/jmbi.1998.1735
- Structural studies of the streptavidin binding loopFreitag, S., LeTrong, I., Klumb, L., Stayton, P., & Stenkamp, R. (1997). Structural studies of the streptavidin binding loop. PROTEIN SCIENCE, 6(6), 1157-1166. https://doi.org/10.1002/pro.5560060604
- Crystal structure of chloro-dimethylstannyl-diphenylphosphinoyl-ethan-phosphonaciddiisopropyl ester, C22H33ClO4P2SnFreitag, S., & HerbstIrmer, R. (1996). Crystal structure of chloro-dimethylstannyl-diphenylphosphinoyl-ethan-phosphonaciddiisopropyl ester, C22H33ClO4P2Sn. Zeitschrift für Kristallographie - Crystalline Materials, 211(11), 859-860. https://doi.org/10.1524/zkri.1996.211.11.859
- Products of the reactions of 2-diazomalonate and of 2-diazoindanedione with germylenes and stannylenesOssig, G., Meller, A., Freitag, S., Muller, O., Gornitzka, H., & HerbstIrmer, R. (1996). Products of the reactions of 2-diazomalonate and of 2-diazoindanedione with germylenes and stannylenes. Organometallics, 15(1), 408-414. https://doi.org/10.1021/om950599p
- Observation of a Ge-Li bond: Donor-base-stabilized (tris(trimethylsilyl)germyl)lithiumFreitag, S., HerbstIrmer, R., Lameyer, L., & Stalke, D. (1996). Observation of a Ge-Li bond: Donor-base-stabilized (tris(trimethylsilyl)germyl)lithium. Organometallics, 15(12), 2839-2841. https://doi.org/10.1021/om9600295
- [S(NtBu)(3)](2-) - A cap-shaped dianion, isoelectronic with the sulfite ion and oxidizable to a stable radical anionFleischer, R., Freitag, S., Pauer, F., & Stalke, D. (1996). [S(NtBu)(3)](2-) - A cap-shaped dianion, isoelectronic with the sulfite ion and oxidizable to a stable radical anion. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 35(2), 204-206. https://doi.org/10.1002/anie.199602041
- Monomeric trilithium-tris[tert-butyldimethylsilylamido]phenylsilane, PhSi[NLi(thf)SiMe(2)CMe(3)](3) - Synthesis and crystal structureHemme, I., Klingebiel, U., Freitag, S., & Stalke, D. (1995). Monomeric trilithium-tris[tert-butyldimethylsilylamido]phenylsilane, PhSi[NLi(thf)SiMe(2)CMe(3)](3) - Synthesis and crystal structure. ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 621(12), 2093-2096. https://doi.org/10.1002/zaac.19956211220
- SYNTHESIS OF THE NEW SILANEDIYLDIPHOSPHINITE TBU(2)SI(OPPH(2))(2) AND ITS REACTIONS WITH THE NORBORNADIENE COMPLEXES C(7)H(8)M(CO)(4) (M=CR, MO, W) - CRYSTAL-STRUCTURES OF CIS-M(CO)(4),[TBU(2)SI(OPPH(2))(2)] (M=CR, MO)Voelker, H., FREITAG, S., Pieper, U., & Roesky, H. (1995). SYNTHESIS OF THE NEW SILANEDIYLDIPHOSPHINITE TBU(2)SI(OPPH(2))(2) AND ITS REACTIONS WITH THE NORBORNADIENE COMPLEXES C(7)H(8)M(CO)(4) (M=CR, MO, W) - CRYSTAL-STRUCTURES OF CIS-M(CO)(4),[TBU(2)SI(OPPH(2))(2)] (M=CR, MO). ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 621(4), 694-698. https://doi.org/10.1002/zaac.19956210433
- (N-(1-ADAMANTYL)[(PENTAFLUORO-2-PROPENYL)THIO]AMINO)(FLUORO)BIS[2,4, 6-TRIS(TRIFLUOROMETHYL)PHENYL]TIN AT 153 KFREITAG, S., Herbstirmer, R., Ahlemann, J., & Roesky, H. (1995). (N-(1-ADAMANTYL)[(PENTAFLUORO-2-PROPENYL)THIO]AMINO)(FLUORO)BIS[2,4, 6-TRIS(TRIFLUOROMETHYL)PHENYL]TIN AT 153 K. Acta Crystallographica C: Crystal Structure Communications, 51(4), 631-633. https://doi.org/10.1107/s0108270194011996
- DILITHIUM N,N'-BIS(TRIMETHYLSILYL)HYDRAZIDE AND A HYDROLYSIS PRODUCT - SIDE-ON-COORDINATED AND END-ON-COORDINATED LI CATIONS TO N2(2-) AND O2(2-)Drost, C., Jager, C., FREITAG, S., Klingebiel, U., Noltemeyer, M., & Sheldrick, G. (1994). DILITHIUM N,N’-BIS(TRIMETHYLSILYL)HYDRAZIDE AND A HYDROLYSIS PRODUCT - SIDE-ON-COORDINATED AND END-ON-COORDINATED LI CATIONS TO N2(2-) AND O2(2-). CHEMISCHE BERICHTE, 127(5), 845-847. https://doi.org/10.1002/cber.19941270510
- TETRAISOPROPYL 2-[(BROMO)(CHLORO)(METHYL)STANNYL]-1,1-ETHANEDIPHOSPHONATE AT 153KFREITAG, S., Herbstirmer, R., Richter, F., & Weichmann, H. (1994). TETRAISOPROPYL 2-[(BROMO)(CHLORO)(METHYL)STANNYL]-1,1-ETHANEDIPHOSPHONATE AT 153K. Acta Crystallographica C: Crystal Structure Communications, 50(10), 1588-1590. https://doi.org/10.1107/s0108270194004105
- REACTIONS OF A FREE STANNAIMINE AND OF BASE-STABILIZED STANNYLENESOssig, G., Meller, A., FREITAG, S., Herbstirmer, R., & Sheldrick, G. (1993). REACTIONS OF A FREE STANNAIMINE AND OF BASE-STABILIZED STANNYLENES. CHEMISCHE BERICHTE-RECUEIL, 126(10), 2247-2253. https://doi.org/10.1002/cber.19931261013
- SYNTHESIS AND CRYSTAL-STRUCTURE OF THE SPIROCYCLE [(I-PR)2P(S)NSIME3]2SNCL2Raubold, T., FREITAG, S., Herbstirmer, R., & Roesky, H. (1993). SYNTHESIS AND CRYSTAL-STRUCTURE OF THE SPIROCYCLE [(I-PR)2P(S)NSIME3]2SNCL2. ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 619(5), 951-953. https://doi.org/10.1002/zaac.19936190524
- SYNTHESIS AND X-RAY CRYSTAL-STRUCTURE OF A STANNAIMINEOssig, G., Meller, A., FREITAG, S., & Herbstirmer, R. (1993). SYNTHESIS AND X-RAY CRYSTAL-STRUCTURE OF A STANNAIMINE. JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 6, 497-499. https://doi.org/10.1039/c39930000497
- IMINOAMINOSULFINATES - SYNTHESIS, CRYSTAL-STRUCTURES, AND REARRANGEMENT MONITORED BY LI-7 SOLID-STATE NUCLEAR-MAGNETIC-RESONANCE SPECTROSCOPYFREITAG, S., Kolodziejski, W., Pauer, F., & Stalke, D. (1993). IMINOAMINOSULFINATES - SYNTHESIS, CRYSTAL-STRUCTURES, AND REARRANGEMENT MONITORED BY LI-7 SOLID-STATE NUCLEAR-MAGNETIC-RESONANCE SPECTROSCOPY. Dalton Transactions, 23, 3479-3488. https://doi.org/10.1039/dt9930003479
- INVESTIGATIONS OF THE STRUCTURE AND REACTIVITY OF A STANNAKETENIMINEGrutzmacher, H., FREITAG, S., Herbstirmer, R., & Sheldrick, G. (1992). INVESTIGATIONS OF THE STRUCTURE AND REACTIVITY OF A STANNAKETENIMINE. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 31(4), 437-438. https://doi.org/10.1002/anie.199204371
- REACTIONS OF GERMYLENES WITH ACID AZIDESMeller, A., Ossig, G., Maringgele, W., Noltemeyer, M., Stalke, D., Herbstirmer, R., FREITAG, S., & Sheldrick, G. (1992). REACTIONS OF GERMYLENES WITH ACID AZIDES. ZEITSCHRIFT FUR NATURFORSCHUNG SECTION B-A JOURNAL OF CHEMICAL SCIENCES, 47(2), 162-170.
- [3 + 1] CYCLOADDITION - REACTION OF DICHLOROGERMYLENE WITH HEXAFLUORO-2-PROPANETHIONE 1-ADAMANTYLIMIDEMay, A., Roesky, H., Herbstirmer, R., FREITAG, S., & Sheldrick, G. (1992). [3 + 1] CYCLOADDITION - REACTION OF DICHLOROGERMYLENE WITH HEXAFLUORO-2-PROPANETHIONE 1-ADAMANTYLIMIDE. Organometallics, 11(1), 15-16. https://doi.org/10.1021/om00037a008
- SYNTHESIS AND X-RAY CRYSTAL-STRUCTURE OF GERMAIMINESMeller, A., Ossig, G., Maringgele, W., Stalke, D., Herbstirmer, R., FREITAG, S., & Sheldrick, G. (1991). SYNTHESIS AND X-RAY CRYSTAL-STRUCTURE OF GERMAIMINES. JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 16, 1123-1124. https://doi.org/10.1039/c39910001123