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1.
Structural basis of the interaction between cyclodipeptide synthases and aminoacylated tRNA substrates.
RNA
; 26(11): 1589-1602, 2020 11.
Artículo
en Inglés
| MEDLINE | ID: mdl-32680846
2.
Flexizyme-aminoacylated shortened tRNAs demonstrate that only the aminoacylated acceptor arms of the two tRNA substrates are required for cyclodipeptide synthase activity.
Nucleic Acids Res
; 48(20): 11615-11625, 2020 11 18.
Artículo
en Inglés
| MEDLINE | ID: mdl-33095883
3.
Cyclodipeptide Synthases of the NYH Subfamily Recognize tRNA Using an α-Helix Enriched with Positive Residues.
Biochemistry
; 60(1): 64-76, 2021 01 12.
Artículo
en Inglés
| MEDLINE | ID: mdl-33331769
4.
In vivo characterization of the activities of novel cyclodipeptide oxidases: new tools for increasing chemical diversity of bioproduced 2,5-diketopiperazines in Escherichia coli.
Microb Cell Fact
; 19(1): 178, 2020 Sep 07.
Artículo
en Inglés
| MEDLINE | ID: mdl-32894164
5.
Structural basis for partition of the cyclodipeptide synthases into two subfamilies.
J Struct Biol
; 203(1): 17-26, 2018 07.
Artículo
en Inglés
| MEDLINE | ID: mdl-29505829
6.
A Comprehensive Overview of the Cyclodipeptide Synthase Family Enriched with the Characterization of 32 New Enzymes.
Front Microbiol
; 9: 46, 2018.
Artículo
en Inglés
| MEDLINE | ID: mdl-29483897
7.
Lung inflammation does not affect the clearance kinetics of lipid nanocapsules following pulmonary administration.
J Control Release
; 235: 24-33, 2016 08 10.
Artículo
en Inglés
| MEDLINE | ID: mdl-27180635
8.
In vivo biocompatibility, clearance, and biodistribution of albumin vehicles for pulmonary drug delivery.
J Control Release
; 210: 1-9, 2015 Jul 28.
Artículo
en Inglés
| MEDLINE | ID: mdl-25980621
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