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Latest Publications

6,11-Dioxobenzo[f]pyrido[1,2-a]indoles Kill Mycobacterium tuberculosis by Targeting Iron-Sulfur Protein Rv0338c (IspQ), A Putative Redox Sensor

R. Szekely; M. Rengifo-Gonzalez; V. Singh; O. Riabova; A. Benjak et al. 

Acs Infectious Diseases. 2020-11-13. Vol. 6, num. 11, p. 3015-3025. DOI : 10.1021/acsinfecdis.0c00531.

Activatable fluorescent probes for hydrolase enzymes based on coumarin-hemicyanine hybrid fluorophores with large Stokes shifts

H. Fujioka; S-n. Uno; M. Kamiya; R. Kojima; K. Johnsson et al. 

Chemical Communications. 2020-05-25. Vol. 56, num. 42, p. 5617-5620. DOI : 10.1039/d0cc00559b.

Chemogenetic Control of Nanobodies

H. Farrants; M. Tarnawski; T. G. Mueller; S. Otsuka; J. Hiblot et al. 

Nature Methods. 2020-02-17. DOI : 10.1038/s41592-020-0746-7.

A general strategy to develop cell permeable and fluorogenic probes for multicolour nanoscopy

L. Wang; M. Tran; E. D’Este; J. Roberti; B. Koch et al. 

Nature Chemistry. 2020-02-01. Vol. 12, num. 2, p. 165-+. DOI : 10.1038/s41557-019-0371-1.

A biosensor for measuring NAD(+) levels at the point of care

Q. Yu; N. Pourmandi; L. Xue; C. Gondrand; S. Fabritz et al. 

Nature Metabolism. 2019-12-01. Vol. 1, num. 12, p. 1219-+. DOI : 10.1038/s42255-019-0151-7.

An enlightening procedure to explain the extreme power of synchrotron radiation

G. Margaritondo 

Journal Of Synchrotron Radiation. 2019-11-01. Vol. 26, p. 2094-2096. DOI : 10.1107/S1600577519010932.

Photoactivation of silicon rhodamines via a light-induced protonation

M. S. Frei; P. Hoess; M. Lampe; B. Nijmeijer; M. Kueblbeck et al. 

Nature Communications. 2019-10-08. Vol. 10, p. 4580. DOI : 10.1038/s41467-019-12480-3.

The metabolite BH4 controls T cell proliferation in autoimmunity and cancer

S. J. F. Cronin; C. Seehus; A. Weidinger; S. Talbot; S. Reissig et al. 

Nature. 2018-11-22. Vol. 563, num. 7732, p. 564-+. DOI : 10.1038/s41586-018-0701-2.