An Expanded Set of Amino Acid Analogs for the Ribosomal Translation of Unnatural Peptides

被引:137
作者
Hartman, Matthew C. T. [1 ]
Josephson, Kristopher [1 ]
Lin, Chi-Wang [1 ]
Szostak, Jack W. [1 ]
机构
[1] Massachusetts Gen Hosp, Dept Mol Biol, Howard Hughes Med Inst, Ctr Computat & Integrat Biol,Simches Res Ctr, Boston, MA 02114 USA
关键词
D O I
10.1371/journal.pone.0000972
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background. The application of in vitro translation to the synthesis of unnatural peptides may allow the production of extremely large libraries of highly modified peptides, which are a potential source of lead compounds in the search for new pharmaceutical agents. The specificity of the translation apparatus, however, limits the diversity of unnatural amino acids that can be incorporated into peptides by ribosomal translation. We have previously shown that over 90 unnatural amino acids can be enzymatically loaded onto tRNA. Methodology/Principal Findings. We have now used a competition assay to assess the efficiency of tRNA-aminoacylation of these analogs. We have also used a series of peptide translation assays to measure the efficiency with which these analogs are incorporated into peptides. The translation apparatus tolerates most side chain derivatives, a few alpha,alpha disubstituted, N-methyl and alpha-hydroxy derivatives, but no beta-amino acids. We show that over 50 unnatural amino acids can be incorporated into peptides by ribosomal translation. Using a set of analogs that are efficiently charged and translated we were able to prepare individual peptides containing up to 13 different unnatural amino acids. Conclusions/Significance. Our results demonstrate that a diverse array of unnatural building blocks can be translationally incorporated into peptides. These building blocks provide new opportunities for in vitro selections with highly modified drug-like peptides.
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页数:15
相关论文
共 72 条
[1]   METABOLISM AND ACTION OF AMINO-ACID ANALOG ANTICANCER AGENTS [J].
AHLUWALIA, GS ;
GREM, JL ;
HAO, Z ;
COONEY, DA .
PHARMACOLOGY & THERAPEUTICS, 1990, 46 (02) :243-271
[2]   Predicting the binding affinities of misacylated tRNAs for Thermus thermophilus EF-Tu•GTP [J].
Asahara, H ;
Uhlenbeck, OC .
BIOCHEMISTRY, 2005, 44 (33) :11254-11261
[3]   SITE-SPECIFIC INCORPORATION OF NONNATURAL RESIDUES INTO PEPTIDES - EFFECT OF RESIDUE STRUCTURE ON SUPPRESSION AND TRANSLATION EFFICIENCIES [J].
BAIN, JD ;
WACKER, DA ;
KUO, EE ;
CHAMBERLIN, AR .
TETRAHEDRON, 1991, 47 (14-15) :2389-2400
[4]   BIOSYNTHETIC SITE-SPECIFIC INCORPORATION OF A NON-NATURAL AMINO-ACID INTO A POLYPEPTIDE [J].
BAIN, JD ;
GLABE, CG ;
DIX, TA ;
CHAMBERLIN, AR ;
DIALA, ES .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (20) :8013-8014
[5]   Incorporation of an unnatural amino acid in the active site of porcine pancreatic phospholipase A(2). Substitution of histidine by 1,2,4-triazole-3-alanine yields an enzyme with high activity at acidic pH [J].
Beiboer, SHW ;
vandenBerg, B ;
Dekker, N ;
Cox, RC ;
Verheij, HM .
PROTEIN ENGINEERING, 1996, 9 (04) :345-352
[6]   Properties of known drugs. 2. Side chains [J].
Bemis, GW ;
Murcko, MA .
JOURNAL OF MEDICINAL CHEMISTRY, 1999, 42 (25) :5095-5099
[7]   Antibacterial lysine analogs that target lysine riboswitches [J].
Blount, Kenneth F. ;
Wang, Joy Xin ;
Lim, Jinsoo ;
Sudarsan, Narasimhan ;
Breaker, Ronald R. .
NATURE CHEMICAL BIOLOGY, 2007, 3 (01) :44-49
[8]   Proteins with β-(thienopyrrolyl)alanines as alternative chromophores and pharmaceutically active amino acids [J].
Budisa, N ;
Alefelder, S ;
Bae, JH ;
Golbik, R ;
Minks, C ;
Huber, R ;
Moroder, L .
PROTEIN SCIENCE, 2001, 10 (07) :1281-1292
[9]   ACTION OF THIAZOLIDINE-2-CARBOXYLIC ACID, A PROLINE ANALOG, ON PROTEIN SYNTHESIZING SYSTEMS [J].
BUSIELLO, V ;
DIGIROLAMO, M ;
CINI, C ;
DEMARCO, C .
BIOCHIMICA ET BIOPHYSICA ACTA, 1979, 564 (02) :311-321
[10]  
CHRISTNE.PJ, 1971, J BIOL CHEM, V246, P7551