EventsThe 2nd International Electronic Conference on Biomolecules
Published
This submission belongs to the session C. Biomacromolecules: Nucleic Acids of the event The 2nd International Electronic Conference on Biomolecules
Published date
17 Nov, 2022
Academic Editor
author-avatarPeter Nielsen
Citation
Valeriya N. Antipova, Nadezhda V. Zyrina, Zakhar V. Reveguk, DNA obtained by ab initio synthesis forms hyperbranched net-like structure, in Proceedings of The 2nd International Electronic Conference on Biomolecules, 1 November–15 November 2022, MDPI: Basel, Switzerland, doi: 10.3390/IECBM2022-13691
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DNA obtained by ab initio synthesis forms hyperbranched net-like structure

Nadezhda V. Zyrina 1,2
1. Institute of Protein Research, Russian Academy of Sciences, Pushchino, Moscow Region, 142290 Russia
2. Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region, 142290 Russia
3. Centre for Diagnostics of Functional Materials for Medicine, Pharmacology and Nanoelectronics of St. Petersburg State University, St. Petersburg, 198504 Russia
Abstract

Ab initio DNA synthesis is unusual synthesis of dsDNA from tens bp to kbp long by thermophilic DNA polymerases from free dNTPs in the complete absence of added DNAs. As commonly believed, the reaction product is a linear double-stranded DNA in the B form. However, an extremely low efficiency of cloning and the failure to hydrolyze high-molecular-weight DNA, as well as the presence short repeats, palindromes, and AT-rich repeats in the sequence assumes more complex spatial structure of this DNA. The AFM coupled with nuclease analysis revealed that high-molecular-weight dsDNA products branched and formed net-like structures. The DNA contained single-stranded and triple-stranded segments. These net-like structures may be assumed to be three-dimensional (3D). The present work was the first detailed investigation of the ab initio synthesis products. The results may be useful to develop techniques requiring synthesis of large amounts of DNA with complex spatial structure.

Keywords
template/primer-independent DNA synthesis
DNA structures
atomic force microscopy
Manuscript
Poster
Zyrina_Poster_Biomolecules_2022.pdf
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