Howard M. Salis, Ph.D.
Affiliations: | Agricultural and Biological Engineering | Pennsylvania State University, State College, PA, United States | |
2007 | University of Minnesota, Twin Cities, Minneapolis, MN |
Area:
Chemical Engineering, Mathematics, GeneticsWebsite:
https://abe.psu.edu/directory/hms17Google:
"Howard Salis"Parents
Sign in to add mentorYiannis Kaznessis | grad student | 2007 | UMN | |
(Simulation of stochastic chemical systems: Applications in the design and construction of synthetic gene networks.) | ||||
Christopher A. Voigt | post-doc | (Chemistry Tree) |
Children
Sign in to add traineeAmin Espah Borujeni | grad student | 2009-2015 | Penn State |
Ayaan Hossain | grad student | 2016-2021 | Penn State |
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Publications
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LaFleur TL, Hossain A, Salis HM. (2022) Automated model-predictive design of synthetic promoters to control transcriptional profiles in bacteria. Nature Communications. 13: 5159 |
Vezeau GE, Salis HM. (2021) Tuning Cell-Free Composition Controls the Time Delay, Dynamics, and Productivity of TX-TL Expression. Acs Synthetic Biology |
Korwar AM, Hossain A, Lee TJ, et al. (2021) Selenium-dependent metabolic reprogramming during inflammation and resolution. The Journal of Biological Chemistry. 100410 |
Cetnar DP, Salis HM. (2021) Systematic Quantification of Sequence and Structural Determinants Controlling mRNA stability in Bacterial Operons. Acs Synthetic Biology |
Hossain A, Lopez E, Halper SM, et al. (2020) Automated design of thousands of nonrepetitive parts for engineering stable genetic systems. Nature Biotechnology |
Halper SM, Hossain A, Salis HM. (2020) The Synthesis Success Calculator: Predicting the Rapid Synthesis of DNA Fragments with Machine Learning. Acs Synthetic Biology |
Manzano I, Vezeau G, Salis H, et al. (2020) RNA size and 3-dimensional structure determine ultrafiltration behavior of small RNA molecules Separation and Purification Technology. 237: 116372 |
Reis AC, Halper SM, Vezeau GE, et al. (2019) Simultaneous repression of multiple bacterial genes using nonrepetitive extra-long sgRNA arrays. Nature Biotechnology |
Tamiev D, Lantz A, Vezeau G, et al. (2019) Controlling Heterogeneity and Increasing Titer from Riboswitch-Regulated Spores for Time-Delayed Protein Expression Applications. Acs Synthetic Biology. 8: 2336-2346 |
Halper SM, Cetnar DP, Salis HM. (2018) An Automated Pipeline for Engineering Many-Enzyme Pathways: Computational Sequence Design, Pathway Expression-Flux Mapping, and Scalable Pathway Optimization. Methods in Molecular Biology (Clifton, N.J.). 1671: 39-61 |