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Search results for: CRISPR

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Search results for: CRISPR

  • Zespół Katedry Wytrzymałości Materiałów

    Katedra zajmuje się zagadnieniami związanymi z wytrzymałością elementów konstrukcji, ich teorią oraz analizą, jak również do myśli przewodnich należy zaliczyć materiałowe badania doświadczalne oraz prace nad technologią betonu. Współpracujemy z przemysłem z branż budowlanych i okołobudowlanych, wykorzystując wypracowane doświadczenie i wiedzę z zakresu materiałów konstrukcyjnych i budowlanych.

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Search results for: CRISPR

  • CRISPR Journal

    Journals

    ISSN: 2573-1599 , eISSN: 2573-1602

  • Establishing the allosteric mechanism in CRISPR‐Cas9

    Publication

    Allostery is a fundamental property of proteins, which regulates biochemical information transfer between spatially distant sites. Here, we report on the critical role of molecular dynamics (MD) simulations in discovering the mechanism of allosteric communication within CRISPR‐Cas9, a leading genome editing machinery with enormous promises for medicine and biotechnology. MD revealed how allostery intervenes during at least three...

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  • Principles of target DNA cleavage and the role of Mg2+ in the catalysis of CRISPR–Cas9

    Publication
    • Ł. Nierzwicki
    • P. R. Arantes
    • M. Jinek
    • G. Lisi
    • G. Palermo
    • K. East
    • J. Binz
    • R. Vsu
    • A. Mohd
    • E. Skeens
    • M. Pacesa

    - Nature Catalysis - Year 2022

    At the core of the CRISPR–Cas9 genome-editing technology, the endonuclease Cas9 introduces site-specific breaks in DNA. However, precise mechanistic information to ameliorate Cas9 function is still missing. Here, multimicrosecond molecular dynamics, free energy and multiscale simulations are combined with solution NMR and DNA cleavage experiments to resolve the catalytic mechanism of target DNA cleavage. We show that the conformation...

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  • Catalytic Mechanism of Non-Target DNA Cleavage in CRISPR-Cas9 Revealed by Ab Initio Molecular Dynamics

    Publication

    - ACS Catalysis - Year 2020

    CRISPR-Cas9 is a cutting-edge genome editing technology, which uses the endonuclease Cas9 to introduce mutations at desired sites of the genome. This revolutionary tool is promising to treat a myriad of human genetic diseases. Nevertheless, the molecular basis of DNA cleavage, which is a fundamental step for genome editing, has not been established. Here, quantum–classical molecular dynamics (MD) and free energy methods are used...

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  • Novel Tools for Comprehensive Functional Analysis of LDLR (Low-Density Lipoprotein Receptor) Variants

    Publication
    • J. Jasiecki
    • M. Targońska
    • A. Janaszak-Jasiecka
    • M. Chmara
    • M. Żuk
    • L. Kalinowski
    • K. Waleron
    • B. Wasąg

    - INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES - Year 2023

    Familial hypercholesterolemia (FH) is an autosomal-dominant disorder caused mainly by substitutions in the low-density lipoprotein receptor (LDLR) gene, leading to an increased risk of premature cardiovascular diseases. Tremendous advances in sequencing techniques have resulted in the discovery of more than 3000 variants of the LDLR gene, but not all of them are clinically relevant. Therefore, functional studies of selected variants...

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