Abstract
The 20 naturally occurring amino acids are characterized by 20 variables: pKNH2, pKCOOH, pI, molecular weight, substituent van der Waals volume, seven 1H and 13C nuclear magnetic resonance shift variables, and eight hydrophobicity-hydrophilicity scales. The 20-dimensional data set is reduced to a few new dimensions by principal components analysis. The three first principal components reveal relationships between the properties of the amino acids and the genetic code. Thus the amino acids coded for by adenosine (A), uracil (U), or cytosine (C) in their second codon position (corresponding to U, A, or G in the second anticodon position) are grouped in these components. No grouping was detected for the amino acids coded for by guanine (G) in the second codon position (corresponding to C in the second anticodon position). The results show that a relationship exists between the physical-chemical properties of the amino acids and which of the A (U), U (A), or C (G) nucleotide is used in the second codon (anticodon) position. The amino acids coded for by G (C) in the second codon (anticodon) position do not participate in this relationship.
MeSH Terms
Amino Acids
Analysis of Variance
Anticodon
Chemical Phenomena
Chemistry
Codon
Genetic Code
Structure-Activity Relationship
Chemicals
Amino Acids
Anticodon
Codon
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sjöström M
Wold S
References (20)
20 references, click to expand
-
Amphiphilic secondary structure: design of peptide hormones.
Science. 1984 Jan 20;223(4633):249-55
PMID: 6322295
-
The molecular basis for the genetic code.
Proc Natl Acad Sci U S A. 1966 Apr;55(4):966-74
PMID: 5219702
-
Cluster analysis of genes in codon space.
J Mol Evol. 1984;20(2):167-74
PMID: 6433035
-
Genetic code correlations: amino acids and their anticodon nucleotides.
J Mol Evol. 1978 Aug 2;11(3):199-210
PMID: 691071
-
[Origin and evolution of the genetic code].
Rev Can Biol Exp. 1982 Nov;41(3):209-16
PMID: 6891093
-
Relations between chemical structure and biological activity in peptides.
J Theor Biol. 1966 Nov;12(2):157-95
PMID: 4291386
-
The amino acid code.
Adv Enzymol Relat Areas Mol Biol. 1978;47:375-432
PMID: 364940
-
Experimental studies related to the origin of the genetic code and the process of protein synthesis--a review.
Orig Life. 1983 Mar;13(1):3-42
PMID: 6350974
-
A unifying concept for the amino acid code.
Bull Math Biol. 1984;46(2):187-203
PMID: 6733309
-
Molecular basis for the genetic code.
J Mol Evol. 1982;18(5):297-303
PMID: 7120424
-
Nuclear magnetic resonance spectroscopy of amino acids, peptides, and proteins.
Adv Protein Chem. 1970;24:447-545
PMID: 4912354
-
Affinities of amino acid side chains for solvent water.
Biochemistry. 1981 Feb 17;20(4):849-55
PMID: 7213619
-
Origin of the genetic code: a physical-chemical model of primitive codon assignments.
Orig Life. 1974 Jul-Oct;5(3):357-62
PMID: 4414951
-
Nucleotide-amino acid interactions and their relation to the genetic code.
J Mol Evol. 1980 May;15(2):103-12
PMID: 7401174
-
Structure-activity analyzed by pattern recognition: the asymmetric case.
J Med Chem. 1980 Jun;23(6):595-9
PMID: 6993681
-
The genetic code as a periodic table.
J Mol Evol. 1978 Aug 2;11(3):211-24
PMID: 691072
-
The origin of the genetic code.
J Mol Biol. 1968 Dec;38(3):367-79
PMID: 4887876
-
The solubility of amino acids and two glycine peptides in aqueous ethanol and dioxane solutions. Establishment of a hydrophobicity scale.
J Biol Chem. 1971 Apr 10;246(7):2211-7
PMID: 5555568
-
The prediction of bradykinin potentiating potency of pentapeptides. An example of a peptide quantitative structure-activity relationship.
Acta Chem Scand B. 1986 Feb;40(2):135-40
PMID: 3705868
-
Surface and inside volumes in globular proteins.
Nature. 1979 Feb 8;277(5696):491-2
PMID: 763335