!!Projects per year
Abstract
Large-scale de novo nucleic acid synthesis is a powerful tool enabling researchers to better understand and engineer biological systems. Fields ranging from genomics to nucleic acid therapeutics to synthetic biology make use of high-throughput experimental approaches requiring access to large pools or libraries of DNA, RNA, synthetic nucleic acid analogs, non-nucleosidic building blocks, or combinations of these. Large oligonucleotide libraries are synthesized as microarrays and used in situ for surface-based assays or cleaved for off-array applications. Here, using a digital maskless photolithographic approach, we address an important source of error in DNA microarray synthesis, oligonucleotide fragmentation arising from the O6-phosphitylation of guanine during the potentially hundreds of coupling cycles required for complex library synthesis. Introducing a very short debranching step using standard capping reagents suppresses depurination-based fragmentation and greatly enhances synthetic yield.
| Originalsprache | Englisch (Amerika) |
|---|---|
| DOIs | |
| Publikationsstatus | Veröffentlicht - 4 Juni 2025 |
Fingerprint
Untersuchen Sie die Forschungsthemen von „An Efficient Guanine O6 Phosphitylation Repair Strategy for High-Quality DNA Library Synthesis via Digital Nucleic Acid Photolithography“. Zusammen bilden sie einen einzigartigen Fingerprint.Projekte
- 1 Laufend
-
EIC Pathfinder 101115134 - DiDAX
Somoza, M. (PI), Sabzalipoor, H. (Weitere Forschende) & Istvánffy, S. (Weitere Forschende)
1/11/23 → 31/10/27
Projekt: Forschung
Datei
Publikationen
- 1 Artikel
-
Efficiency of Digital Photolithographic Synthesis of Large, High-Quality DNA Libraries and Microarrays using a Guanine O6 Dephosphitylation Strategy
Santhosh, S. (Erstautor/-in), Istvánffy, S. (Co-Autor/-in), Sabary, O., Yaakobi, E., Giridhar, M. (Co-Autor/-in), Behr, J. (Co-Autor/-in) & Somoza, M. M. (Letztautor/-in), 31 Okt. 2025, in: Communications Chemistry. 8, 1, 321.Publikation: Beitrag in Fachzeitschrift › Artikel › Begutachtung
Open Access2 Zitate (Scopus)
Aktivitäten
- 1 Posterpräsentation
-
Optimizing Sequence Fidelity in DNA Microarray Synthesis Incorporating Debranching Strategy
Santhosh, S. (Redner/-in)
3 Sept. 2024 → 6 Sept. 2024Aktivität: Gastvortrag oder Veranstaltungsbeitrag › Posterpräsentation
Dieses zitieren
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver