Sequence self-selection by cyclic phase separation

Author:

Bartolucci Giacomo12ORCID,Calaça Serrão Adriana3ORCID,Schwintek Philipp3ORCID,Kühnlein Alexandra3,Rana Yash12ORCID,Janto Philipp3,Hofer Dorothea3,Mast Christof B.3,Braun Dieter3ORCID,Weber Christoph A.4ORCID

Affiliation:

1. Division Biological Physics, Max Planck Institute for the Physics of Complex Systems, Dresden 01187, Germany

2. Center for Systems Biology Dresden, Dresden 01307, Germany

3. Ludwigs-Maximilian-Universität München and Center for NanoScience, Munich 80799, Germany

4. Faculty of Mathematics, Natural Sciences, and Materials Engineering: Institute of Physics, University of Augsburg, Augsburg 86159, Germany

Abstract

The emergence of functional oligonucleotides on early Earth required a molecular selection mechanism to screen for specific sequences with prebiotic functions. Cyclic processes such as daily temperature oscillations were ubiquitous in this environment and could trigger oligonucleotide phase separation. Here, we propose sequence selection based on phase separation cycles realized through sedimentation in a system subjected to the feeding of oligonucleotides. Using theory and experiments with DNA, we show sequence-specific enrichment in the sedimented dense phase, in particular of short 22-mer DNA sequences. The underlying mechanism selects for complementarity, as it enriches sequences that tightly interact in the dense phase through base-pairing. Our mechanism also enables initially weakly biased pools to enhance their sequence bias or to replace the previously most abundant sequences as the cycles progress. Our findings provide an example of a selection mechanism that may have eased screening for auto-catalytic self-replicating oligonucleotides.

Funder

EC | ERC | HORIZON EUROPE European Research Council

Simons Foundation

Deutsche Forschungsgemeinschaft

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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