RNA Affinity for Molecular L-Histidine; Genetic Code Origins
暂无分享,去创建一个
[1] I. Majerfeld,et al. An RNA pocket for an aliphatic hydrophobe , 1994, Nature Structural Biology.
[2] G. F. Joyce,et al. Mutagenic PCR. , 2006, CSH protocols.
[3] J. Berger. The genetic code and the origin of life , 1976, Acta biotheoretica.
[4] P. Carbon,et al. A guide for probing native small nuclear RNA and ribonucleoprotein structures. , 1989, Methods in enzymology.
[5] M Yarus,et al. A specific amino acid binding site composed of RNA. , 1988, Science.
[6] M Yarus,et al. Three small ribooligonucleotides with specific arginine sites. , 1993, Biochemistry.
[7] Michael Famulok,et al. Molecular Recognition of Amino Acids by RNA-Aptamers: An L-Citrulline Binding RNA Motif and Its Evolution into an L-Arginine Binder , 1994 .
[8] R R Breaker,et al. An amino acid as a cofactor for a catalytic polynucleotide. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[9] L F Landweber,et al. Rhyme or reason: RNA-arginine interactions and the genetic code. , 1998, Chemistry & biology.
[10] M. Yarus,et al. Genetic code origins , 1989, Nature.
[11] R. Knight,et al. The Scope of Selection , 2004 .
[12] M Yarus,et al. RNAs with dual specificity and dual RNAs with similar specificity. , 1994, Science.
[13] R. Knight,et al. Origins of the genetic code: the escaped triplet theory. , 2005, Annual review of biochemistry.
[14] E Westhof,et al. Structural Basis of Ligand Discrimination by Two Related RNA Aptamers Resolved by NMR Spectroscopy , 1996, Science.
[15] P. Burgstaller,et al. Structural probing and damage selection of citrulline- and arginine-specific RNA aptamers identify base positions required for binding. , 1995, Nucleic acids research.
[16] M. Illangasekare,et al. Phenylalanine-Binding RNAs and Genetic Code Evolution , 2002, Journal of Molecular Evolution.
[17] R. Knight,et al. BayesFold: Rational 2° folds that combine thermodynamic, covariation, and chemical data for aligned RNA sequences , 2004 .
[18] P. Burgstaller,et al. RNA aptamers that bind L-arginine with sub-micromolar dissociation constants and high enantioselectivity. , 1996, Nucleic acids research.
[19] G. Tocchini-Valentini,et al. Molecular recognition of amino acids by RNA aptamers: the evolution into an L-tyrosine binder of a dopamine-binding RNA motif. , 2000, RNA.
[20] I. Majerfeld,et al. Isoleucine:RNA sites with associated coding sequences. , 1998, RNA.
[21] Rob Knight,et al. Finding specific RNA motifs: function in a zeptomole world? , 2003, RNA.
[22] Michael Famulok,et al. Stereospecific recognition of tryptophan agarose by in vitro selected RNA , 1992 .
[23] Catherine Lozupone,et al. Selection of the simplest RNA that binds isoleucine. , 2003, RNA.
[24] I. Majerfeld,et al. Affinity selection-amplification from randomized ribooligonucleotide pools. , 1996, Methods in enzymology.
[25] C R Woese,et al. The molecular basis for the genetic code. , 1966, Proceedings of the National Academy of Sciences of the United States of America.
[26] L. Gold,et al. High affinity ligands from in vitro selection: complex targets. , 1998, Proceedings of the National Academy of Sciences of the United States of America.