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My research focuses on programming new cellular behaviors by designing and embedding synthetic gene networks that perform desired functions in single cells and multi-cellular environments. We genetically engineer a variety of cell types including bacteria, yeast, and mammalian stem cells. This nascent field of Synthetic Biology holds promise for a wide range of applications such as programmed tissue engineering, environmental biosensing and effecting, biomaterial fabrication, and an improved understanding of naturally occuring biological processes.
The construction of de-novo genetic circuits begins with the assembly and characterization of genetic parts, or building blocks. We have assembled a library of genetic components that regulate transcription, translation, phosphorylation, and synthesis of and response to signaling molecules such as acyl-homoserine lactones in bacteria and cytokinins in Eukaryotes. We then combine these parts into various network topologies that elicit new behaviors in a programmable fashion. In single cells, we have constructed transcriptional cascades and other network topologies with feedback and feed-forward motifs. We have shown theoretically and experimentally that these networks can perform digital computation, attenuate gene expression noise, or exhibit analog programmed functions such as pulse generation. Through the construction and analysis of such fundamental network motifs, we aim to demonstrate sophisticated programmed control over gene expression as well as improve our quantitative understanding of naturally occurring complex gene networks.
The construction of de-novo genetic circuits begins with the assembly and characterization of genetic parts, or building blocks. We have assembled a library of genetic components that regulate transcription, translation, phosphorylation, and synthesis of and response to signaling molecules such as acyl-homoserine lactones in bacteria and cytokinins in Eukaryotes. We then combine these parts into various network topologies that elicit new behaviors in a programmable fashion. In single cells, we have constructed transcriptional cascades and other network topologies with feedback and feed-forward motifs. We have shown theoretically and experimentally that these networks can perform digital computation, attenuate gene expression noise, or exhibit analog programmed functions such as pulse generation. Through the construction and analysis of such fundamental network motifs, we aim to demonstrate sophisticated programmed control over gene expression as well as improve our quantitative understanding of naturally occurring complex gene networks.
Research Interests
Papers共 262 篇Author StatisticsCo-AuthorSimilar Experts
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Yonger Xue,Xucheng Hou,Yichen Zhong,Yuebao Zhang,Shi Du,Diana D Kang, Leiming Wang,Chang Wang,Haoyuan Li, Siyu Wang, Zhengwei Liu,Meng Tian, Kaiyuan Guo, Dinglingge Cao,Binbin Deng,David W McComb, Eric Purisic, Jinye Dai,Pauline Hamon,Brian D Brown,Nadejda M Tsankova,Miriam Merad,Darrell J Irvine,Ron Weiss,Yizhou Dong
Nature communicationsno. 1 (2025): 2198-2198
Rashmi P. Mohanty,Sudipta Mallick, Peter Crowley, Max Sokolich, Katherine Kiwimagi, Shiva Razavi,Calin Belta,Sambeeta Das,Ron Weiss
biorxiv(2025)
Parisa Yousefpour, Justin R Gregory, Kristen Si, Jan Lonzaric, Yingzhong Li, Junmin Wang,Kashif Qureshi, Amir Ledbetter, Ashley A Lemnios, Jonathan Dye, Tanaka K Remba, Rachel Yeung, Melissa Güereca, Linette Rodriguez, Yuebao Zhang, Shengwei Wu,Yizhou Dong,Ron Weiss,Darrell J Irvine
bioRxiv the preprint server for biology (2025)
Tessema K Kassaw,Wenlong Xu, Christopher S Zalewski, Katherine Kiwimagi,Ron Weiss,Mauricio S Antunes,Ashok Prasad,June I Medford
ACS synthetic biologyno. 6 (2025): 1988-2001
arxiv(2025)
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biorxiv(2024)
Fabio Caliendo, Elvira Vitu,Junmin Wang, Shuo-Hsiu Kuo, Hayden Sandt, Casper Norskov Enghuus,Jesse Tordoff, Neslly Estrada,James J. Collins,Ron Weiss
NATURE CHEMICAL BIOLOGY (2024)
IEEE ROBOTICS AND AUTOMATION LETTERSno. 2 (2024): 1819-1826
Lílian L. Souza Figueiredo, Wilson Lau Junior, Victor Wendel da Silva Goncalves, Ester Silveira Ramos,Vania D’Almeida,Lucas Eduardo Botelho de Souza,Maristela Delgado Orellana,Kuruvilla Joseph Abraham,Flávio Lichtenstein,Lucas Bleicher,Vasco Azevedo, Rigoberto Gadelha Chaves,Giuliano Bonfá,Velia Siciliano,Ron Weiss,Stanton Gerson,Aparecida Maria Fontes
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Author Statistics
#Papers: 261
#Citation: 22923
H-Index: 66
G-Index: 150
Sociability: 7
Diversity: 3
Activity: 36
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