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2020

Journal Article

Molybdenum enzymes and how they support virulence in pathogenic bacteria

Zhong, Qifeng, Kobe, Bostjan and Kappler, Ulrike (2020). Molybdenum enzymes and how they support virulence in pathogenic bacteria. Frontiers in Microbiology, 11 615860, 1-23. doi: 10.3389/fmicb.2020.615860

Molybdenum enzymes and how they support virulence in pathogenic bacteria

2020

Journal Article

Peptide methionine sulfoxide reductase from Haemophilus influenzae is required for protection against HOCl and affects the host response to infection

Nasreen, Marufa, Dhouib, Rabeb, Hosmer, Jennifer, Wijesinghe, Hewa Godage Sithija, Fletcher, Aidan, Mahawar, Manish, Essilfie, Ama-Tawiah, Blackall, Patrick J., McEwan, Alastair G. and Kappler, Ulrike (2020). Peptide methionine sulfoxide reductase from Haemophilus influenzae is required for protection against HOCl and affects the host response to infection. ACS Infectious Diseases, 6 (7), 1928-1939. doi: 10.1021/acsinfecdis.0c00242

Peptide methionine sulfoxide reductase from Haemophilus influenzae is required for protection against HOCl and affects the host response to infection

2020

Journal Article

Haemophilus influenzae glucose catabolism leading to production of the immunometabolite acetate has a key contribution to the host airway-pathogen interplay

López-López, Nahikari, Euba, Begoña, Hill, Julian, Dhouib, Rabeb, Caballero, Lucı A, Leiva, José, Hosmer, Jennifer, Cuesta, Sergio, Ramos-Vivas, José, Díez-Martínez, Roberto, Schirra, Horst Joachim, Blank, Lars M., Kappler, Ulrike and Garmendia, Junkal (2020). Haemophilus influenzae glucose catabolism leading to production of the immunometabolite acetate has a key contribution to the host airway-pathogen interplay. ACS Infectious Diseases, 6 (3), 406-421. doi: 10.1021/acsinfecdis.9b00359

Haemophilus influenzae glucose catabolism leading to production of the immunometabolite acetate has a key contribution to the host airway-pathogen interplay

2019

Journal Article

New insights into the molecular physiology of sulfoxide reduction in bacteria

Kappler, Ulrike, Nasreen, Marufa and McEwan, Alastair (2019). New insights into the molecular physiology of sulfoxide reduction in bacteria. Advances in Microbial Physiology, 75, 1-51. doi: 10.1016/bs.ampbs.2019.05.001

New insights into the molecular physiology of sulfoxide reduction in bacteria

2019

Journal Article

Control of bacterial sulfite detoxification by conserved and species-specific regulatory circuits

Tan, Yi Jie Chelsea, Zhao, Chengzhi, Nasreen, Marufa, O'Rourke, Leo, Dhouib, Rabeb, Roberts, Leah, Wan, Ying, Beatson, Scott A. and Kappler, Ulrike (2019). Control of bacterial sulfite detoxification by conserved and species-specific regulatory circuits. Frontiers in Microbiology, 10 (MAY) 960, 960. doi: 10.3389/fmicb.2019.00960

Control of bacterial sulfite detoxification by conserved and species-specific regulatory circuits

2019

Journal Article

Metabolic analyses reveal common adaptations in two invasive Haemophilus influenzae strains

Muda, Noor Marian, Nasreen, Marufa, Dhouib, Rabeb, Hosmer, Jennifer, Hill, Julian, Mahawar, Manish, Schirra, Horst Joachim, McEwan, Alastair G. and Kappler, Ulrike (2019). Metabolic analyses reveal common adaptations in two invasive Haemophilus influenzae strains. Pathogens and Disease, 77 (2) ftz015. doi: 10.1093/femspd/ftz015

Metabolic analyses reveal common adaptations in two invasive Haemophilus influenzae strains

2019

Book Chapter

Chapter 3: implementing an ALURE

West, J., Veenstra, A., Kappler, U., Pedwell, R., Cheung, S., O'Sullivan, L. and Rowland, S. (2019). Chapter 3: implementing an ALURE. Engaging undergraduate students in authentic science research: a large-scale approach. (pp. 15-22) edited by Susan Rowland, Gwendolyn Lawrie and Rhianna Pedwell. Hammondville, NSW Australia: Higher Education Research and Development Society of Australasia.

Chapter 3: implementing an ALURE

2019

Conference Publication

Glucose catabolism by respiration assisted fermentation leading to acetate production has a key contribution to chronic patient airway infection by Haemophilus influenzae

Garmendia Garcia, Juncal, Lopez-Lopez, Nahikari, Euba, Begona, Almagro, Goizeder, Marti, Sara, Ramos-Vivas, Jose, Pozueta-Romero, Javier, Barbier, Marlette, Diez-Martinez, Roberto and Kappler, Ulrike (2019). Glucose catabolism by respiration assisted fermentation leading to acetate production has a key contribution to chronic patient airway infection by Haemophilus influenzae. European-Respiratory-Society (ERS) International Congress, Madrid, Spain, 28 September -2 October 2019. Lausanne, Switzerland: European Respiratory Society. doi: 10.1183/13993003.congress-2019.PA5437

Glucose catabolism by respiration assisted fermentation leading to acetate production has a key contribution to chronic patient airway infection by Haemophilus influenzae

2018

Journal Article

Antifungal benzo[b]thiophene 1,1-dioxide IMPDH inhibitors exhibit pan-assay interference (PAINS) profiles

Kummari, Lalith K., Butler, Mark S., Furlong, Emily, Blundell, Ross, Nouwens, Amanda, Silva, Alberto B., Kappler, Ulrike, Fraser, James A., Kobe, Bostjan, Cooper, Matthew A. and Robertson, Avril A.B. (2018). Antifungal benzo[b]thiophene 1,1-dioxide IMPDH inhibitors exhibit pan-assay interference (PAINS) profiles. Bioorganic and Medicinal Chemistry, 26 (20), 5408-5419. doi: 10.1016/j.bmc.2018.09.004

Antifungal benzo[b]thiophene 1,1-dioxide IMPDH inhibitors exhibit pan-assay interference (PAINS) profiles

2018

Journal Article

The central active site arginine in sulfite oxidizing enzymes alters kinetic properties by controlling electron transfer and redox interactions

Hsiao, Ju-Chun, McGrath, Aaron P., Kielmann, Linda, Kalimuthu, Palraj, Darain, Farzana, Bernhardt, Paul V., Harmer, Jeffrey, Lee, Mihwa, Meyers, Kimberley, Maher, Megan J. and Kappler, Ulrike (2018). The central active site arginine in sulfite oxidizing enzymes alters kinetic properties by controlling electron transfer and redox interactions. Biochimica et Biophysica Acta - Bioenergetics, 1859 (1), 19-27. doi: 10.1016/j.bbabio.2017.10.001

The central active site arginine in sulfite oxidizing enzymes alters kinetic properties by controlling electron transfer and redox interactions

2018

Conference Publication

Genetic diversity analyses in Ralstonia syzygii species

Safni, I., Fegan, M., Sly, L. and Kappler, U. (2018). Genetic diversity analyses in Ralstonia syzygii species. International Congress of Plant Pathology (ICPP), Boston MA, United States, July 29 - August 3 2018. St Paul, MN, United States: American Phytopathological Society.

Genetic diversity analyses in Ralstonia syzygii species

2017

Journal Article

Bioelectrocatalysis of sulfite dehydrogenase from Sinorhizobium meliloti with its physiological cytochrome electron partner

Kalimuthu, Palraj, Hsiao, Ju-Chun, Nair, Remya Purushothaman, Kappler, Ulrike and Bernhardt, Paul V. (2017). Bioelectrocatalysis of sulfite dehydrogenase from Sinorhizobium meliloti with its physiological cytochrome electron partner. ChemElectroChem, 4 (12), 3163-3170. doi: 10.1002/celc.201700838

Bioelectrocatalysis of sulfite dehydrogenase from Sinorhizobium meliloti with its physiological cytochrome electron partner

2017

Journal Article

Cryptococcus neoformans ADS lyase is an enzyme essential for virulence whose crystal structure reveals features exploitable in antifungal drug design

Chitty, Jessica L., Blake, Kirsten L., Blundell, Ross D., Koh, Y. Q. Andre E., Thompson, Merinda, Robertson, Avril A. B., Butler, Mark S., Cooper, Matthew A., Kappler, Ulrike, Williams, Simon J., Kobe, Bostjan and Fraser, James A. (2017). Cryptococcus neoformans ADS lyase is an enzyme essential for virulence whose crystal structure reveals features exploitable in antifungal drug design. Journal of Biological Chemistry, 292 (28), 11829-11839. doi: 10.1074/jbc.M117.787994

Cryptococcus neoformans ADS lyase is an enzyme essential for virulence whose crystal structure reveals features exploitable in antifungal drug design

2017

Journal Article

A unique large-scale undergraduate research experience in molecular systems biology for non-mathematics majors

Kappler, Ulrike, Rowland, Susan L. and Pedwell, Rhianna K. (2017). A unique large-scale undergraduate research experience in molecular systems biology for non-mathematics majors. Biochemistry and Molecular Biolody Education, 45 (3), 235-248. doi: 10.1002/bmb.21033

A unique large-scale undergraduate research experience in molecular systems biology for non-mathematics majors

2017

Journal Article

The ecology of acidophilic microorganisms in the corroding concrete sewer environment

Li, Xuan, Kappler, Ulrike, Jiang, Guangming and Bond, Philip L. (2017). The ecology of acidophilic microorganisms in the corroding concrete sewer environment. Frontiers in Microbiology, 8 (APR) 683, 683. doi: 10.3389/fmicb.2017.00683

The ecology of acidophilic microorganisms in the corroding concrete sewer environment

2017

Journal Article

Sulfur compound oxidation and carbon co-assimilation in the haloalkaliphilic sulfur oxidizers Thioalkalivibrio versutus and Thioalkalimicrobium aerophilum

Ang, Wee Kiong, Mahbob, Maisarah, Dhouib, Rabeb and Kappler, Ulrike (2017). Sulfur compound oxidation and carbon co-assimilation in the haloalkaliphilic sulfur oxidizers Thioalkalivibrio versutus and Thioalkalimicrobium aerophilum. Research in Microbiology, 168 (3), 255-265. doi: 10.1016/j.resmic.2016.12.004

Sulfur compound oxidation and carbon co-assimilation in the haloalkaliphilic sulfur oxidizers Thioalkalivibrio versutus and Thioalkalimicrobium aerophilum

2017

Journal Article

Draft genome sequences of three nontypeable strains of Haemophilus influenzae, C188, R535, and 1200, isolated from different types of disease

Kappler, Ulrike, Dhouib, Rabeb, Nair, Remya Purushothaman and McEwan, Alastair G. (2017). Draft genome sequences of three nontypeable strains of Haemophilus influenzae, C188, R535, and 1200, isolated from different types of disease. Genome Announcements, 5 (12) e00035-17, e00035-17. doi: 10.1128/genomeA.00035-17

Draft genome sequences of three nontypeable strains of Haemophilus influenzae, C188, R535, and 1200, isolated from different types of disease

2017

Journal Article

GMP synthase is required for virulence factor production and infection by cryptococcus neoformans

Chitty, Jessica L., Tatzenko, Tayla L. , Williams, Simon J., Koh, Y. Q. Andre E., Corfield, Elizabeth C., Butler, Mark S., Robertson, Avril A. B., Cooper, Matthew A., Kappler, Ulrike, Kobe, Bostjan and Fraser, James A. (2017). GMP synthase is required for virulence factor production and infection by cryptococcus neoformans. Journal of Biological Chemistry, 292 (7), 3049-3059. doi: 10.1074/jbc.M116.767533

GMP synthase is required for virulence factor production and infection by cryptococcus neoformans

2017

Book Chapter

The sulfite oxidase family of molybdenum enzymes

Kappler, Ulrike and Schwarz, Guenter (2017). The sulfite oxidase family of molybdenum enzymes. Molybdenum and tungsten enzymes: biochemistry. (pp. 240-273) edited by Russ Hille, Carola Schulzke and Martin L. Kirk. Cambridge, United Kingdom: Royal Society of Chemistry. doi: 10.1039/9781782623915-00240

The sulfite oxidase family of molybdenum enzymes

2016

Journal Article

A novel, molybdenum-containing methionine sulfoxide reductase supports survival of Haemophilus influenzae in an in vivo model of infection

Dhouib, Rabeb, Othman, Dk. Seti Maimonah Pg, Lin, Victor, Lai, Xuanjie J., Wijesinghe, Hewa G. S., Essilfie, Ama-Tawiah, Davis, Amanda, Nasreen, Marufa, Bernhardt, Paul V., Hansbro, Philip M., McEwan, Alastair G. and Kappler, Ulrike (2016). A novel, molybdenum-containing methionine sulfoxide reductase supports survival of Haemophilus influenzae in an in vivo model of infection. Frontiers in Microbiology, 7 (NOV) 1743, 1743. doi: 10.3389/fmicb.2016.01743

A novel, molybdenum-containing methionine sulfoxide reductase supports survival of Haemophilus influenzae in an in vivo model of infection