#intrinsicstructuraldisorder — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #intrinsicstructuraldisorder, aggregated by home.social.
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Our latest paper https://elifesciences.org/articles/87335
directly measures the #EffectivePopulationSize that matters to #NearlyNeutralTheory / #DriftBarrier theory, as the degree to which #CodonBias differs from expectations from GC content. Surprisingly, stronger #NaturalSelection -> higher #IntrinsicStructuralDisorder proteins
#MolecularEvolution #PopulationGenetics #EvolgenPaper 1/ -
Our latest paper https://elifesciences.org/articles/87335
directly measures the #EffectivePopulationSize that matters to #NearlyNeutralTheory / #DriftBarrier theory, as the degree to which #CodonBias differs from expectations from GC content. Surprisingly, stronger #NaturalSelection -> higher #IntrinsicStructuralDisorder proteins
#MolecularEvolution #PopulationGenetics #EvolgenPaper 1/ -
Our latest paper https://elifesciences.org/articles/87335
directly measures the #EffectivePopulationSize that matters to #NearlyNeutralTheory / #DriftBarrier theory, as the degree to which #CodonBias differs from expectations from GC content. Surprisingly, stronger #NaturalSelection -> higher #IntrinsicStructuralDisorder proteins
#MolecularEvolution #PopulationGenetics #EvolgenPaper 1/ -
Our latest paper https://elifesciences.org/articles/87335
directly measures the #EffectivePopulationSize that matters to #NearlyNeutralTheory / #DriftBarrier theory, as the degree to which #CodonBias differs from expectations from GC content. Surprisingly, stronger #NaturalSelection -> higher #IntrinsicStructuralDisorder proteins
#MolecularEvolution #PopulationGenetics #EvolgenPaper 1/ -
Our latest paper https://elifesciences.org/articles/87335
directly measures the #EffectivePopulationSize that matters to #NearlyNeutralTheory / #DriftBarrier theory, as the degree to which #CodonBias differs from expectations from GC content. Surprisingly, stronger #NaturalSelection -> higher #IntrinsicStructuralDisorder proteins
#MolecularEvolution #PopulationGenetics #EvolgenPaper 1/ -
Our latest #preprint develops a new metric of #CodonAdaptation (not just #CodonBias) to measure the kind of #EffectivePopulationSize that matters to #NearlyNeutralTheory, and uses it to discover that #NaturalSelection prefers high #IntrinsicStructuralDisorder https://www.biorxiv.org/content/10.1101/2023.03.02.530449v1 1/6
#MolecularEvolution #PopulationGenetics #EvolgenPaper -
Our latest #preprint develops a new metric of #CodonAdaptation (not just #CodonBias) to measure the kind of #EffectivePopulationSize that matters to #NearlyNeutralTheory, and uses it to discover that #NaturalSelection prefers high #IntrinsicStructuralDisorder https://www.biorxiv.org/content/10.1101/2023.03.02.530449v1 1/6
#MolecularEvolution #PopulationGenetics #EvolgenPaper -
Our latest #preprint develops a new metric of #CodonAdaptation (not just #CodonBias) to measure the kind of #EffectivePopulationSize that matters to #NearlyNeutralTheory, and uses it to discover that #NaturalSelection prefers high #IntrinsicStructuralDisorder https://www.biorxiv.org/content/10.1101/2023.03.02.530449v1 1/6
#MolecularEvolution #PopulationGenetics #EvolgenPaper -
Our latest #preprint develops a new metric of #CodonAdaptation (not just #CodonBias) to measure the kind of #EffectivePopulationSize that matters to #NearlyNeutralTheory, and uses it to discover that #NaturalSelection prefers high #IntrinsicStructuralDisorder https://www.biorxiv.org/content/10.1101/2023.03.02.530449v1 1/6
#MolecularEvolution #PopulationGenetics #EvolgenPaper -
Our latest #preprint develops a new metric of #CodonAdaptation (not just #CodonBias) to measure the kind of #EffectivePopulationSize that matters to #NearlyNeutralTheory, and uses it to discover that #NaturalSelection prefers high #IntrinsicStructuralDisorder https://www.biorxiv.org/content/10.1101/2023.03.02.530449v1 1/6
#MolecularEvolution #PopulationGenetics #EvolgenPaper -
We wanted to know what caused the extraordinarily #LongTermTrends we previously saw: in #IntrinsicStructuralDisorder and in the degree to which hydrophobic #AminoAcids are clustered, as a function of the time elapsed since a Pfam domain originated. https://elifesciences.org/articles/57347 2/11
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We wanted to know what caused the extraordinarily #LongTermTrends we previously saw: in #IntrinsicStructuralDisorder and in the degree to which hydrophobic #AminoAcids are clustered, as a function of the time elapsed since a Pfam domain originated. https://elifesciences.org/articles/57347 2/11
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We wanted to know what caused the extraordinarily #LongTermTrends we previously saw: in #IntrinsicStructuralDisorder and in the degree to which hydrophobic #AminoAcids are clustered, as a function of the time elapsed since a Pfam domain originated. https://elifesciences.org/articles/57347 2/11
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We wanted to know what caused the extraordinarily #LongTermTrends we previously saw: in #IntrinsicStructuralDisorder and in the degree to which hydrophobic #AminoAcids are clustered, as a function of the time elapsed since a Pfam domain originated. https://elifesciences.org/articles/57347 2/11
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We wanted to know what caused the extraordinarily #LongTermTrends we previously saw: in #IntrinsicStructuralDisorder and in the degree to which hydrophobic #AminoAcids are clustered, as a function of the time elapsed since a Pfam domain originated. https://elifesciences.org/articles/57347 2/11