paper-with-me

홈 › Papers

Adaptive ratchets and the evolution of molecular complexity

2021-11-18 · Tom Röschinger, Roberto Morán Tovar, Simone Pompei, Michael Lässig

Biological systems have evolved to amazingly complex states, yet we do not understand in general how evolution operates to generate increasing genetic and functional complexity. Molecular recognition sites are short genome segments or peptides binding a cognate recognition target of sufficient sequence similarity. Such sites are simple, ubiquitous modules of sequence information, cellular function, and evolution. Here we show that recognition sites, if coupled to a time-dependent target, can rapidly evolve to complex states with larger code length and smaller coding density than sites recognising a static target. The underlying fitness model contains selection for recognition, which depends on the sequence similarity between site and target, and a uniform cost per unit of code length. Site sequences are shown to evolve in a specific adaptive ratchet, which produces selection of different strength for code extensions and compressions. Ratchet evolution increases the adaptive width of evolved sites, accelerating the adaptation to moving targets and facilitating refinement and innovation of recognition functions. We apply these results to the recognition of fast-evolving antigens by the human immune system. Our analysis shows how molecular complexity can evolve as a collateral to selection for function in a dynamic environment.

📄 PDF Abstract BibTeX arXiv:2111.09981

Code (1)

tomroesch/complexity_evolution 공식 구현

Similar Papers 제목 키워드 기반

Leveraging Environmental Correlations: The Thermodynamics of Requisite Variety

2016-09-17 · Alexander B. Boyd, Dibyendu Mandal, James P. Crutchfield

Key to biological success, the requisite variety that confronts an adaptive organism is the set of detectable, accessible, and controllable states in its environment. We analyze its role in the thermodynamic functioning …

Neutrally Evolving Interlocking Complexity in the Quandary Den

2026-04-20 · Andrew Walsh arxiv

Molecular biology features numerous complexes of proteins that coordinate in an interlocking fashion to fulfill different functions. Adaptive evolution explains some of this complexity, but needn't be the default when ne…

Getting higher on rugged landscapes: Inversion mutations open access to fitter adaptive peaks in NK fitness landscapes

2022-10-13 · Leonardo Trujillo, Paul Banse, Guillaume Beslon

Molecular evolution is often conceptualised as adaptive walks on rugged fitness landscapes, driven by mutations and constrained by incremental fitness selection. It is well known that epistasis shapes the ruggedness of t…

The simple emergence of complex molecular function

2021-05-25 · Susanna Manrubia

At odds with a traditional view of molecular evolution that seeks a descent-with-modification relationship between functional sequences, new functions can emerge {\it de novo} with relative ease. At early times of molecu…

Computational strategies for dissecting the high-dimensional complexity of adaptive immune repertoires

2017-11-29

The adaptive immune system recognizes antigens via an immense array of antigen-binding antibodies and T-cell receptors, the immune repertoire. The interrogation of immune repertoires is of high relevance for understandin…

DiversitySpecificity