Compositional genomes:: Prebiotic information transfer in mutually catalytic noncovalent assemblies

被引:237
作者
Segré, D
Ben-Eli, D
Lancet, D [1 ]
机构
[1] Weizmann Inst Sci, Dept Mol Genet, IL-76100 Rehovot, Israel
[2] Weizmann Inst Sci, Crown Human Genome Ctr, IL-76100 Rehovot, Israel
关键词
D O I
10.1073/pnas.97.8.4112
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
Mutually catalytic sets of simple organic molecules have been suggested to be capable of self-replication and rudimentary chemical evolution. Previous models for the behavior of such sets have analyzed the global properties of short biopolymer ensembles by using graph theory and a mean field approach. In parallel, experimental studies with the autocatalytic formation of amphiphilic assemblies (e.g., lipid vesicles or micelles) demonstrated self-replication properties resembling those of living cells. Combining these approaches, we analyze here the kinetic behavior of small heterogeneous assemblies of spontaneously aggregating molecules, of the type that could form readily under prebiotic conditions. A statistical formalism for mutual rate enhancement is used to numerically simulate the detailed chemical kinetics within such assemblies, We demonstrate that a straightforward set of assumptions about kinetically enhanced recruitment of simple amphiphilic molecules, as well as about the spontaneous growth and splitting of assemblies, results in a complex population behavior. The assemblies manifest a significant degree of homeostasis, resembling the previously predicted quasi-stationary states of biopolymer ensembles (Dyson, F. J, (1982) J. Mel. Evol. 18, 344-350). Such emergent catalysis-driven, compositionally biased entities may be viewed as having rudimentary "compositional genomes," Our analysis addresses the question of how mutually catalytic metabolic networks, devoid of sequence-based biopolymers, could exhibit transfer of chemical information and might undergo selection and evolution. This computed behavior may constitute a demonstration of natural selection in populations of molecules without genetic apparatus, suggesting a pathway from random molecular assemblies to a minimal protocell.
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页码:4112 / 4117
页数:6
相关论文
共 68 条
[1]  
[Anonymous], MOL THEORY EVOLUTION
[2]   AUTOCATALYTIC SELF-REPLICATING MICELLES AS MODELS FOR PREBIOTIC STRUCTURES [J].
BACHMANN, PA ;
LUISI, PL ;
LANG, J .
NATURE, 1992, 357 (6373) :57-59
[3]  
Bagley RJ., 1991, ARTIF LIFE, P93
[4]  
BAGLEY RJ, 1991, ARTIFICIAL LIFE 2, V10, P141
[5]   Microscopic and mesoscopic simulation of entropic micelles [J].
Bolhuis, PG ;
Frenkel, D .
PHYSICA A, 1997, 244 (1-4) :45-58
[6]   Pyranosyl-RNA: Chiroselective self-assembly of base sequences by ligative oligomerization of tetranucleotide-2',3'-cyclophosphates (with a commentary concerning the origin of biomolecular homochirality) [J].
Bolli, M ;
Micura, R ;
Eschenmoser, A .
CHEMISTRY & BIOLOGY, 1997, 4 (04) :309-320
[7]   Experimental evidence of kinetic bistability in a biphasic surfactant system [J].
Buhse, T ;
Pimienta, V ;
Lavabre, D ;
Micheau, JC .
JOURNAL OF PHYSICAL CHEMISTRY A, 1997, 101 (29) :5215-5217
[8]   THE EFFICIENCY AND VERSATILITY OF CATALYTIC RNA - IMPLICATIONS FOR AN RNA WORLD [J].
CECH, TR .
GENE, 1993, 135 (1-2) :33-36
[9]   A REMARKABLE ENHANCEMENT OF THE RATE OF ESTER THIOLYSIS BY SYNTHETIC AMPHIPHILE VESICLES [J].
CUCCOVIA, IM ;
QUINA, FH ;
CHAIMOVICH, H .
TETRAHEDRON, 1982, 38 (07) :917-920
[10]   The first living systems: a bioenergetic perspective [J].
Deamer, DW .
MICROBIOLOGY AND MOLECULAR BIOLOGY REVIEWS, 1997, 61 (02) :239-+