Title of article :
Translocation Properties of Primitive Molecular Machines and Their Relevance to the Structure of the Genetic Code
Author/Authors :
ALDANA-GONZءLEZ، نويسنده , , M. and COCHO، نويسنده , , G. and LARRALDE، نويسنده , , H. and MARTحNEZ-MEKLER، نويسنده , , G.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
19
From page :
27
To page :
45
Abstract :
We address the question, related with the origin of the genetic code, of why are there three bases per codon in the translation to protein process. As a follow-up to our previous work (Aldana et al., 1998, Martı́nez-Mekler et al., 1999a,b), we approach this problem by considering the translocation properties of primitive molecular machines, which capture basic features of ribosomal/messenger RNA interactions, while operating under prebiotic conditions. Our model consists of a short one-dimensional chain of charged particles (rRNA antecedent) interacting with a polymer (mRNA antecedent) via electrostatic forces. The chain is subject to external forcing that causes it to move along the polymer which is fixed in a quasi-one-dimensional geometry. Our numerical and analytic studies of statistical properties of random chain/polymer potentials suggest that, under very general conditions, a dynamics is attained in which the chain moves along the polymer in steps of three monomers. By adjusting the model in order to consider present-day genetic sequences, we show that the above property is enhanced for coding regions. Intergenic sequences display a behavior closer to the random situation. We argue that this dynamical property could be one of the underlying causes for the three-base codon structure of the genetic code
Journal title :
Journal of Theoretical Biology
Serial Year :
2003
Journal title :
Journal of Theoretical Biology
Record number :
1535589
Link To Document :
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