
RNA Enzymology and Technology
- 1st Edition, Volume 726 - January 15, 2026
- Editor: Kathy Liu
- Language: English
- Hardback ISBN:9 7 8 - 0 - 4 4 3 - 4 3 1 3 2 - 6
- eBook ISBN:9 7 8 - 0 - 4 4 3 - 4 3 1 3 3 - 3
RNA Enzymology and Technology, Volume 725 in the Methods in Enzymology series, highlights new advances in the field, with this new volume presenting interesting chapters on t… Read more

RNA Enzymology and Technology, Volume 725 in the Methods in Enzymology series, highlights new advances in the field, with this new volume presenting interesting chapters on topics such as RNA enzymes in transcription, RNA processing, translation regulation, RNA transcriptase in gene expression regulation, Enzymes Involved in Ribosome Biogenesis and Translation Regulation, In Vitro Transcriptase: Methods for Studying RNA Synthesis, RNA Enzymes in RNA Silencing and Regulation, RNA Silencing Machinery: Mechanisms of RISC and MicroRNA Regulation, Enzymes in RNA-Based Therapeutics, and much more.
Other chapters cover Antisense Oligonucleotides (ASOs) and RNase H: Mechanisms and Applications, RNA Enzymes in Targeted Therapeutics: From Bench to Bedside, Enzymes in RNA Sequencing and Analysis, Enzymes in High-Throughput RNA Sequencing: Applications and Challenges, Advanced Techniques and Future Directions, and much more.
Other chapters cover Antisense Oligonucleotides (ASOs) and RNase H: Mechanisms and Applications, RNA Enzymes in Targeted Therapeutics: From Bench to Bedside, Enzymes in RNA Sequencing and Analysis, Enzymes in High-Throughput RNA Sequencing: Applications and Challenges, Advanced Techniques and Future Directions, and much more.
- Provides the latest information on Methods in Enzymology series
- Offers outstanding and original reviews on a range of RNA Enzymology and Technology
- Serves as an indispensable reference for researchers and students alike
Scientists
Section 1: RNA enzymes in transcription, RNA processing, and translation regulation
1. RNA transcriptase in gene expression regulation
Jessie Yan Zhang
2. Enzymes Involved in Ribosome Biogenesis and Translation Regulation
Dmitri N Ermolenko
3. In Vitro Transcriptase: Methods for Studying RNA Synthesis
Lijun Zhou
Section 2: RNA Enzymes in RNA Silencing and Regulation
4. RNA Silencing Machinery: Mechanisms of RISC and MicroRNA Regulation
Alicia Rogers
Section 3: Enzymes in RNA-Based Therapeutics
5. Antisense Oligonucleotides (ASOs) and RNase H: Mechanisms and Applications
Kathy Liu
6. RNA Enzymes in Targeted Therapeutics: From Bench to Bedside
Yuru Wang
Section 4: Enzymes in RNA Sequencing and Analysis
7. Enzymes in High-Throughput RNA Sequencing: Applications and Challenges
Yaming Hou
Section 5: Advanced Techniques and Future Directions
8. Innovative Methods for the Study of RNA Enzymes
Huiqing Zhou
9. Emerging RNA sequencing methods
Jia Sheng
10. RNA Enzymes in Disease Mechanisms and Therapeutics
Mike Kearse
1. RNA transcriptase in gene expression regulation
Jessie Yan Zhang
2. Enzymes Involved in Ribosome Biogenesis and Translation Regulation
Dmitri N Ermolenko
3. In Vitro Transcriptase: Methods for Studying RNA Synthesis
Lijun Zhou
Section 2: RNA Enzymes in RNA Silencing and Regulation
4. RNA Silencing Machinery: Mechanisms of RISC and MicroRNA Regulation
Alicia Rogers
Section 3: Enzymes in RNA-Based Therapeutics
5. Antisense Oligonucleotides (ASOs) and RNase H: Mechanisms and Applications
Kathy Liu
6. RNA Enzymes in Targeted Therapeutics: From Bench to Bedside
Yuru Wang
Section 4: Enzymes in RNA Sequencing and Analysis
7. Enzymes in High-Throughput RNA Sequencing: Applications and Challenges
Yaming Hou
Section 5: Advanced Techniques and Future Directions
8. Innovative Methods for the Study of RNA Enzymes
Huiqing Zhou
9. Emerging RNA sequencing methods
Jia Sheng
10. RNA Enzymes in Disease Mechanisms and Therapeutics
Mike Kearse
- Edition: 1
- Volume: 726
- Published: January 15, 2026
- Language: English
KL
Kathy Liu
Kathy Liu is associated with Department of Biochemistry and Biophysics, University of Pennsylvania Perelman School of Medicine.
Affiliations and expertise
Department of Biochemistry and Biophysics