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ACS Synthetic Biology|January 7, 2022
Interaction of Bare dSpCas9, Scaffold gRNA, and Type II Anti-CRISPR Proteins Highly Favors the Control of Gene Expression in the Yeast <i>S. cerevisiae</i>Yadan Zhang, Mario Andrea MarchisioNucleic Acids Research|January 18, 2023
CRISPR-associated type V proteins as a tool for controlling mRNA stability in S. cerevisiae synthetic gene circuitsLifang Yu, Mario Andrea MarchisioBiology|July 2, 2021
<i>Saccharomyces cerevisiae</i> Promoter Engineering before and during the Synthetic Biology EraXiaofan Feng, Mario Andrea MarchisioRNA Biology|February 1, 2017
CRISPR-Cas type II-based Synthetic Biology applications in eukaryotic cellsMario Andrea Marchisio, Zhiwei HuangSynthetic and Systems Biotechnology|September 29, 2021
Synthetic polycistronic sequences in eukaryotesXuekun Wang, Mario Andrea MarchisioInternational Journal of Molecular Sciences|June 2, 2021
Novel <i>S. cerevisiae</i> Hybrid Synthetic Promoters Based on Foreign Core Promoter SequencesXiaofan Feng, Mario Andrea MarchisioMethods in Molecular Biology (Clifton, N.J.)|March 12, 2024
dCas12a:Pre-crRNA: A New Tool to Induce mRNA Degradation in Saccharomyces cerevisiae Synthetic Gene CircuitsLifang Yu, Mario Andrea MarchisioRNA Biology|September 29, 2020
Type II anti-CRISPR proteins as a new tool for synthetic biologyYadan Zhang, Mario Andrea MarchisioFrontiers in Bioengineering and Biotechnology|October 26, 2020
Types I and V Anti-CRISPR Proteins: From Phage Defense to Eukaryotic Synthetic Gene CircuitsLifang Yu, Mario Andrea MarchisioMethods in Molecular Biology (Clifton, N.J.)|October 13, 2022
Design of Gene Boolean Gates and Circuits with Convergent PromotersBiruck Woldai Abraha, Mario Andrea MarchisioPageof 5