756 results on '"Roth, Frederick P."'
Search Results
102. A Comprehensive, Flexible Collection of SARS-CoV-2 Coding Regions
103. Global BioID-based SARS-CoV-2 proteins proximal interactome unveils novel ties between viral polypeptides and host factors involved in multiple COVID19-associated mechanisms
104. A SARS-CoV-2 BioID-based virus-host membrane protein interactome and virus peptide compendium: new proteomics resources for COVID-19 research
105. Author response: Multiplexed measurement of variant abundance and activity reveals VKOR topology, active site and human variant impact
106. A Flexible Genome-Scale SARS-CoV-2 Clone Resource
107. Multiplexed measurement of variant abundance and activity reveals VKOR topology, active site and human variant impact
108. Yeast-Based Genetic Interaction Analysis of Human Kinome
109. A Flexible Genome-Scale Resource of SARS-CoV-2 Coding Sequence Clones
110. MaveQuest: a web resource for planning experimental tests of human variant effects
111. Highly Combinatorial Genetic Interaction Analysis Reveals a Multi-Drug Transporter Influence Network
112. FuncBase : a resource for quantitative gene function annotation
113. The Genetic Landscape of a Cell
114. Next generation software for functional trend analysis
115. Chemical substructures that enrich for biological activity
116. The Synergizer service for translating gene, protein and other biological identifiers
117. Metabolite profiling of blood from individuals undergoing planned myocardial infarction reveals early markers of myocardial injury
118. SILVER helps assign peptides to tandem mass spectra using intensity-based scoring
119. Query Chem: a Google-powered web search combining text and chemical structures
120. Towards a proteome-scale map of the human protein-protein interaction network
121. Prediction of similarly acting cis-regulatory modules by subsequence profiling and comparative genomics in Drosophila melanogaster and D.pseudoobscura
122. Evidence for dynamically organized modularity in the yeast protein-protein interaction network
123. A non-parametric model for transcription factor binding sites
124. Predicting phenotype from patterns of annotation
125. GoFish finds genes with combinations of Gene Ontology attributes
126. Characterizing gene sets with FuncAssociate
127. Concepts, methods, and languages for building timely intelligent systems
128. A race through the maze of genomic evidence
129. Nuova Biodiversità Da Un Singolo Ceppo: La Storia Di 32 Spore
130. Assessing predictions on fitness effects of missense variants in calmodulin
131. Quantifying immune-based counterselection of somatic mutations
132. Characterizing ABC-Transporter Substrate-Likeness Using a Clean-Slate Genetic Background
133. A reference map of the human protein interactome
134. An open-source platform to distribute and interpret data from multiplexed assays of variant effect
135. CNTN5-/+or EHMT2-/+human iPSC-derived neurons from individuals with autism develop hyperactive neuronal networks
136. A web application and service for imputing and visualizing missense variant effect maps
137. Author response: CNTN5-/+or EHMT2-/+human iPSC-derived neurons from individuals with autism develop hyperactive neuronal networks
138. A proactive genotype-to-patient-phenotype map for cystathionine beta-synthase
139. Motifs, themes and thematic maps of an integrated Saccharomyces cerevisiae interaction network
140. Predicting co-complexed protein pairs using genomic and proteomic data integration
141. Concept Learning and the Recognition and Classification of Exemplars
142. Machine Methods for Acquiring, Learning, and Applying Knowledge.
143. Matching and Abstraction in Knowledge Systems.
144. Knowledge Acquisition from Structural Descriptions.
145. A Practice Regimen for Diagnosis and Treatment of Child Abuse
146. Learning By Example.
147. The Prominence of Lexical Information in Memory Representations of Meaning
148. Plasticity in Memorial Networks
149. The Impact of Oncogenic EGFRvIII on the Proteome of Extracellular Vesicles Released from Glioblastoma Cells
150. CNTN5−/+orEHMT2−/+iPSC-Derived Neurons from Individuals with Autism Develop Hyperactive Neuronal Networks
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