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eLife Sciences Publications, Ltd

The acetylase activity of Cdu1 regulates bacterial exit from infected cells by protecting Chlamydia effectors from degradation

Publication ,  Preprint
Bastidas, RJ; Kędzior, M; Davidson, RK; Walsh, SC; Dolat, L; Sixt, BS; Pruneda, JN; Coers, J; Valdivia, RH
January 10, 2024

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Publication Date

January 10, 2024
 

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Bastidas, R. J., Kędzior, M., Davidson, R. K., Walsh, S. C., Dolat, L., Sixt, B. S., … Valdivia, R. H. (2024). The acetylase activity of Cdu1 regulates bacterial exit from infected cells by protecting Chlamydia effectors from degradation. eLife Sciences Publications, Ltd. https://doi.org/10.7554/elife.87386.2
Bastidas, Robert J., Mateusz Kędzior, Robert K. Davidson, Stephen C. Walsh, Lee Dolat, Barbara S. Sixt, Jonathan N. Pruneda, Jörn Coers, and Raphael H. Valdivia. “The acetylase activity of Cdu1 regulates bacterial exit from infected cells by protecting Chlamydia effectors from degradation.” ELife Sciences Publications, Ltd, January 10, 2024. https://doi.org/10.7554/elife.87386.2.
Bastidas RJ, Kędzior M, Davidson RK, Walsh SC, Dolat L, Sixt BS, et al. The acetylase activity of Cdu1 regulates bacterial exit from infected cells by protecting Chlamydia effectors from degradation. eLife Sciences Publications, Ltd. 2024.
Bastidas, Robert J., et al. “The acetylase activity of Cdu1 regulates bacterial exit from infected cells by protecting Chlamydia effectors from degradation.” ELife Sciences Publications, Ltd, 10 Jan. 2024. Crossref, doi:10.7554/elife.87386.2.
Bastidas RJ, Kędzior M, Davidson RK, Walsh SC, Dolat L, Sixt BS, Pruneda JN, Coers J, Valdivia RH. The acetylase activity of Cdu1 regulates bacterial exit from infected cells by protecting Chlamydia effectors from degradation. eLife Sciences Publications, Ltd. 2024.

DOI

Publication Date

January 10, 2024