Non-Natural Nucleic Acids : Methods and Protocols /
Corporate Author: | |
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Other Authors: | |
Format: | eBook |
Language: | English |
Published: |
New York, NY :
Springer New York : Imprint: Humana,
2019.
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Edition: | 1st ed. 2019. |
Series: | Methods in Molecular Biology,
1973 |
Subjects: |
Table of Contents:
- Synthesis and Enzymatic Characterization of Sugar-Modified Nucleoside Triphosphate Analogs
- Synthesis of Site-Specific Crown Ether Adducts to DNA Abasic Sites, 8-Oxo-7,8-Dihydro-2'-Deoxyguanosine and 2'-Deoxycytidine
- Synthesis of a Fluorescent Cytidine TNA Triphosphate Analogue
- Synthesis of Base-Modified dNTPs through Cross-Coupling Reactions and Their Polymerase Incorporation to DNA
- 2ʹ-C,4ʹ-C-Ethyleneoxy-Bridged 2ʹ-Deoxyribonucleic Acids (EoDNAs) with Thymine Nucleobases: Synthesis, Duplex-Forming Ability, and Enzymatic Stability
- Synthesis Protocols for Simple Uncharged Glycol Carbamate Nucleic Acids
- Synthesis of Nucleobase-Functionalized Morpholino Monomers
- Synthesis and Application of LKγT Peptide Nucleic Acids
- Aminoglycoside Functionalization as a Tool for Targeting Nucleic Acids
- Preparation and Purification of Oligodeoxynucleotide Duplexes Containing a Site-Specific, Reduced, Chemically-Stable Covalent Interstrand Cross-Link between a Guanine Residue and an Abasic Site
- Copper-Catalyzed Alkyne-Azide Cycloaddition on the Solid Phase for the Preparation of Fully Click-Modified Nucleic Acids
- Labeling Peptide Nucleic Acids with Indium-111
- Site-Specific Labeling of DNA via PCR with an Expanded Genetic Alphabet
- Flexible Nucleic Acids (FNAs) As Informational Molecules: Enzymatic Polymerization of fNTPs on DNA Templates and Nonenzymatic Oligomerization of RNA on FNA Templates
- Artificial Nucleosides as Diagnostic Probes to Measure Translesion DNA Synthesis
- FRET Assay for Ligands Targeting the Bacterial A-Site RNA
- The Use of Serinol Nucleic Acids as Ultrasensitive Molecular Beacons
- Oligonucleotide Primers with G8AE-Clamp Modifications for RT-qPCR Detection of the Low-Copy dsRNA
- Determining Steady-State Kinetics of DNA Polymerase Nucleotide Incorporation.