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Article title matches
- LeuRS (39 bytes)
- Category:Leurs, R (39 bytes)
1: List of pages with the keyword Leurs, R - Category:Leurs R (38 bytes)
1: List of pages with the keyword Leurs R
Page text matches
- 2byt (4,400 bytes)
24: ...with the G19-C56 tertiary base pair of tRNA(Leu). LeuRS recognition of tRNA(Leu) depends essentially on t... - 2bte (4,565 bytes)
24: ...with the G19-C56 tertiary base pair of tRNA(Leu). LeuRS recognition of tRNA(Leu) depends essentially on t... - Sandbox Reserved 704 (10,240 bytes)
12: == Structure of leucyl-tRNA synthetase (LeuRS) ==
15: ...are two classes of aaRSs. Leucyl-tRNA synthetase (LeuRS) belongs to the class I and more precisely to the...
22: 1) The class I-characterizing <scene name='Sandbox_Reserved_704/Domain_1/2'>Rossmann-fold aminoacylati...
25: ...oacylation domain. There is a <scene name='Sandbox_Reserved_704/Joint/1'>“joint”</scene> formed by...
27: ...th noncognate amino acids.The <scene name='Sandbox_Reserved_704/Asp332/1'>residue Asp 332</scene> is n... - 3zgz (3,925 bytes)
14: ... TM84 requires tRNA(Leu) for tight binding to the LeuRS synthetic active site, unlike any previously repo... - 3zjt (5,245 bytes)
14: ...minoacyl-tRNA synthetase, leucyl-tRNA synthetase (LeuRS), in fungi via the oxaborole tRNA trapping (OBORT... - 3zjv (5,253 bytes)
14: ...minoacyl-tRNA synthetase, leucyl-tRNA synthetase (LeuRS), in fungi via the oxaborole tRNA trapping (OBORT... - 3zju (5,286 bytes)
14: ...minoacyl-tRNA synthetase, leucyl-tRNA synthetase (LeuRS), in fungi via the oxaborole tRNA trapping (OBORT... - 3ziu (3,860 bytes)
14: ...synthetases and origins were fused to this common LeuRS core, surprisingly, pretransfer editing was enhan... - 2w8f (2,802 bytes)
34: [[Category: Leurs R]] - 2w8g (4,446 bytes)
26: ...A, Jongejan A, van Elk R, Bertrand S, Perrakis A, Leurs R, Smit AB, Sixma TK, Bertrand D, de Esch IJ J Me...
45: [[Category: Leurs R]] - 2wfd (5,467 bytes)
6: ...NonStdRes'><td class="sblockLbl"><b>[[Non-Standard_Residue|NonStd Res:]]</b></td><td class="sblockDat"...
22: ...wever, compared to bacteria, eukaryotic cytosolic LeuRS editing domains contain an extra helix that close... - 2wfe (4,830 bytes)
21: ...wever, compared to bacteria, eukaryotic cytosolic LeuRS editing domains contain an extra helix that close... - 2wfg (5,222 bytes)
22: ...wever, compared to bacteria, eukaryotic cytosolic LeuRS editing domains contain an extra helix that close... - 2xnt (3,410 bytes)
16: ...Elk R, Bertrand S, Sixma TK, Bertrand D, Smit AB, Leurs R, de Graaf C, de Esch IJ Bioorg Med Chem. 2011 O... - 2xnu (3,356 bytes)
16: ...Elk R, Bertrand S, Sixma TK, Bertrand D, Smit AB, Leurs R, de Graaf C, de Esch IJ Bioorg Med Chem. 2011 O... - 2xnv (3,357 bytes)
16: ...Elk R, Bertrand S, Sixma TK, Bertrand D, Smit AB, Leurs R, de Graaf C, de Esch IJ Bioorg Med Chem. 2011 O... - 2xyu (5,198 bytes)
16: ...P, Farenc C, Zoutman WH, Hameetman L, Wijtmans M, Leurs R, Tensen CP, Siegal G, de Esch IJ Eur J Med Chem... - 3pz0 (3,440 bytes)
2: ==The crystal structure of AaLeuRS-CP1==
14: ...rom protein dynamics regulation in two respective LeuRS CP1s. Further results from Pro and Gly mutational... - 3pz5 (3,278 bytes)
2: ==The crystal structure of AaLeuRS-CP1-D20==
13: ...rom protein dynamics regulation in two respective LeuRS CP1s. Further results from Pro and Gly mutational... - 3pz6 (3,328 bytes)
2: ==The crystal structure of GlLeuRS-CP1==
13: ...rom protein dynamics regulation in two respective LeuRS CP1s. Further results from Pro and Gly mutational...
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