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, Genetics
Website:
https://abe.psu.edu/directory/hms17
Google:
"Howard Salis"

Parents

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Yiannis 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

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Amin 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
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