Hard problems of the origin of liferamet.elte.hu/~ramet/oktatas/Evollepes/Szathmary_Origlife.pdfThe...
Transcript of Hard problems of the origin of liferamet.elte.hu/~ramet/oktatas/Evollepes/Szathmary_Origlife.pdfThe...
![Page 1: Hard problems of the origin of liferamet.elte.hu/~ramet/oktatas/Evollepes/Szathmary_Origlife.pdfThe Major Transitions in Evolution Author: Eors Szathmary Created Date: 5/8/2012 10:48:39](https://reader033.fdocuments.in/reader033/viewer/2022042415/5f3051bd013552152577f126/html5/thumbnails/1.jpg)
Hard problems of the
origin of life Eörs Szathmáry
Collegium Budapest Eötvös University
München
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Chemical evolution
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Units of evolution
hereditary traits affecting
survival and/or
reproduction
1. multiplication
2. heredity
3. variation
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Gánti’s chemoton model (1974)
ALL THREE SUBSYSTEMS ARE AUTOCATALYTIC
template
copying
metabolism
membrane
growth
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The latest edition: OUP 2003
• After several editions in Hungarian
• Two previous books (the Principles and Contra Crick) plus one essay
• Essays appreciating the biological and philosophical importance
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Pathways of supersystem evolution
boundary
template
metabolism M B
B T
M T M B T
INFRABIOLOGICAL SYSTEMS
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What about replication?
• Replication from a chemical point of view
always rests on autocatalysis
• The basic form is
A + X 2 A + Y
• very important for biology
• Much more general than DNA
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The formose ‘reaction’
formaldehyde
glycolaldehyde
autocatalysis
Butlerow, 1861
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Replication in the formose
reaction
• Replication is non-informational
• Autocatalysis – YES
• Heredity – NO
• Good for metabolism
• Not good for genetics
• Butlerow was born on the 15th Sept, 1829
• He was regarded as one of the best lecturers of his time. His lectures were lucid and thorough, yet his language was colourful. Local society often preferred his lectures to the theatre
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Primitive ancestry of the reverse
citric acid cycle
• Was proposed by
Günter
Wächtershäuser
(1990)
• Coupled to CO2
fixation and pyrite
formation around
deep-sea hydrothermal
vents
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The main problem of the origin of
life is metabolite channelling
• Enzymes speed up reactions relative to the
unwanted reactions
• Spontaneous decay reactions abound
• Maintenance, not only reproduction,
requires autocatalysis
dx/ dt = k x – d x = 0
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All network models neglecting side
reactions were seriously incomplete
• E.g. protein networks
• In model assumptions, a reaction is either
good or neutral for the system – but the
number of harmful transformations is in
fact much higher
• Did life emerge from a chemical canyon?
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Chemical evolution was a race
between tar formation and life
formation
Chemical networks
Life Tar
What fraction of planets would end
up with just tar?
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Another case: von Kiedrowski’s
replicators
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Von Kiedrowski’s replicator
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Peptide replicator networks
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• Theory with experiment
• J. Mol. Evol.,
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Does temperature cycling work?
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Elongation taxes the system badly
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Classification of replicators
Limited
heredity
Unlimited
heredity
Holistic formose
Modular Von
Kiedrowski
genes
Limited (number of individuals) >
(number of types)
Unlimited (# of individuals) << (# of types)
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A crucial insight: Eigen’s paradox
(1971)
• Early replication must have been error-prone
• Error threshold sets the limit of maximal genome size to <100 nucleotides
• Not enough for several genes
• Unlinked genes will compete
• Genome collapses
• Resolution???
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Molecular hypercycle (Eigen,
1971)
autocatalysis
heterocatalytic
aid
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Parasites in the hypercycle (JMS)
parasite
short circuit
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The stochastic corrector model
for compartmentation
Szathmáry, E. &
Demeter L. (1987)
Group selection of early
replicators and the
origin of life. J. theor
Biol. 128, 463-486.
Grey, D., Hutson, V. &
Szathmáry, E. (1995) A
re-examination of the
stochastic corrector
model. Proc. R. Soc.
Lond. B 262, 29-35.
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Dynamics of the SC model
• Independently reassorting genes
• Selection for optimal gene composition between
compartments
• Competition among genes within the same
compartment
• Stochasticity in replication and fission generates
variation on which natural selection acts
• A stationary compartment population emerges
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Group selection of early
replicators
• Many more compartments than templates within any compartment
• No migration (fusion) between compartments
• Each compartment has only one parent
• Group selection is very efficient
• Selection for replication synchrony Chromosomes!
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Kauffman: Reflexively autocatalytic
protein networks (1986)
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Current investigations
• Evolvability is possible only in compartments
• Occasionally new autocatalytic loops appear
• Can be inherited from one cell to the daugther
• Can be selected for, give some evolution
• GARD is shadow of protein networks is a shadow
of template replicators
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Open questions
• Origin of efficient replication
• Origin of full protocells
• Origin of transcription
• Origin of highly specific enzymes
• Origin of translation