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Highly efficient DSB-free base editing for streptomycetes with CRISPR-BEST  | PNAS
Highly efficient DSB-free base editing for streptomycetes with CRISPR-BEST | PNAS

Frontiers | Genome Editing for CNS Disorders
Frontiers | Genome Editing for CNS Disorders

Clinical and Experimental Pediatrics
Clinical and Experimental Pediatrics

CRISPR Start-Loss: A Novel and Practical Alternative for Gene Silencing  through Base-Editing-Induced Start Codon Mutations: Molecular Therapy -  Nucleic Acids
CRISPR Start-Loss: A Novel and Practical Alternative for Gene Silencing through Base-Editing-Induced Start Codon Mutations: Molecular Therapy - Nucleic Acids

Genes | Free Full-Text | Applications of CRISPR-Cas Technologies to  Proteomics
Genes | Free Full-Text | Applications of CRISPR-Cas Technologies to Proteomics

Cells | Free Full-Text | BE4max and AncBE4max Are Efficient in Germline  Conversion of C:G to T:A Base Pairs in Zebrafish
Cells | Free Full-Text | BE4max and AncBE4max Are Efficient in Germline Conversion of C:G to T:A Base Pairs in Zebrafish

IJMS | Free Full-Text | Approaches to Enhance Precise CRISPR/Cas9-Mediated  Genome Editing
IJMS | Free Full-Text | Approaches to Enhance Precise CRISPR/Cas9-Mediated Genome Editing

Base editors: a powerful tool for generating animal models of human diseases
Base editors: a powerful tool for generating animal models of human diseases

CRISPR/Cas gene therapy - Zhang - 2021 - Journal of Cellular Physiology -  Wiley Online Library
CRISPR/Cas gene therapy - Zhang - 2021 - Journal of Cellular Physiology - Wiley Online Library

Frontiers | CRISPR-Based Genetic Manipulation of Candida Species:  Historical Perspectives and Current Approaches
Frontiers | CRISPR-Based Genetic Manipulation of Candida Species: Historical Perspectives and Current Approaches

i-Silence, Please! An Alternative for Gene Disruption via Adenine Base  Editors: Molecular Therapy
i-Silence, Please! An Alternative for Gene Disruption via Adenine Base Editors: Molecular Therapy

Frontiers | Delivery Platforms for CRISPR/Cas9 Genome Editing of Glial  Cells in the Central Nervous System
Frontiers | Delivery Platforms for CRISPR/Cas9 Genome Editing of Glial Cells in the Central Nervous System

PDF) CRISPR-STOP: gene silencing through base-editing-induced nonsense  mutations
PDF) CRISPR-STOP: gene silencing through base-editing-induced nonsense mutations

CRISPR-STOP: Gene silencing through base editing- induced nonsense mutations
CRISPR-STOP: Gene silencing through base editing- induced nonsense mutations

CRISPR-STOP: gene silencing through base-editing-induced nonsense mutations  | Nature Methods
CRISPR-STOP: gene silencing through base-editing-induced nonsense mutations | Nature Methods

Highly efficient multiplex human T cell engineering without double-strand  breaks using Cas9 base editors | Nature Communications
Highly efficient multiplex human T cell engineering without double-strand breaks using Cas9 base editors | Nature Communications

CRISPR/Cas gene therapy - Zhang - 2021 - Journal of Cellular Physiology -  Wiley Online Library
CRISPR/Cas gene therapy - Zhang - 2021 - Journal of Cellular Physiology - Wiley Online Library

PDF] CRISPR-Cas9 DNA Base-Editing and Prime-Editing | Semantic Scholar
PDF] CRISPR-Cas9 DNA Base-Editing and Prime-Editing | Semantic Scholar

In situ CRISPR‐Cas9 base editing for the development of genetically  engineered mouse models of breast cancer | The EMBO Journal
In situ CRISPR‐Cas9 base editing for the development of genetically engineered mouse models of breast cancer | The EMBO Journal

High-Fidelity Cytosine Base Editing in a GC-Rich Corynebacterium glutamicum  with Reduced DNA Off-Target Editing Effects | Microbiology Spectrum
High-Fidelity Cytosine Base Editing in a GC-Rich Corynebacterium glutamicum with Reduced DNA Off-Target Editing Effects | Microbiology Spectrum

PDF) CRISPR-STOP: gene silencing through base-editing-induced nonsense  mutations
PDF) CRISPR-STOP: gene silencing through base-editing-induced nonsense mutations

CRISPR-Mediated Base Editing Enables Efficient Disruption of Eukaryotic Genes  through Induction of STOP Codons
CRISPR-Mediated Base Editing Enables Efficient Disruption of Eukaryotic Genes through Induction of STOP Codons

CRISPR/Cas9-mediated genome editing induces gene knockdown by altering the  pre-mRNA splicing in mice | BMC Biotechnology | Full Text
CRISPR/Cas9-mediated genome editing induces gene knockdown by altering the pre-mRNA splicing in mice | BMC Biotechnology | Full Text

Current Status and Challenges of DNA Base Editing Tools - ScienceDirect
Current Status and Challenges of DNA Base Editing Tools - ScienceDirect

Base Editing
Base Editing