Harvard Catalyst Profiles

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Peter H Culviner, Ph.D.

Concepts (74)

Concepts are derived automatically from a person's publications.
Concepts are listed by decreasing relevance which is based on many factors, including how many publications the person wrote about that topic, how long ago those publications were written, and how many publications other people have written on that same topic.
Name Number of Publications Most Recent Publication Publications by All Authors Concept Score Why?
RNA, Ribosomal220202271.190 Why?
Endoribonucleases220212291.190 Why?
Escherichia coli Proteins6202210561.120 Why?
Antitoxins22022750.930 Why?
Ribosomes520214940.840 Why?
Escherichia coli5202242110.710 Why?
Bacterial Toxins220219240.620 Why?
RNA, Bacterial220203920.560 Why?
RNA, Messenger42022127670.530 Why?
RNA Stability120183190.520 Why?
Ribosomal Proteins120183660.510 Why?
RNA Processing, Post-Transcriptional120183940.500 Why?
Sequence Analysis, RNA2202020360.480 Why?
Gene Expression Regulation, Bacterial4202411400.370 Why?
Mycobacterium tuberculosis3202419140.280 Why?
DNA-Binding Proteins4202295940.260 Why?
RNA, Catalytic12022520.200 Why?
Antibiotics, Antitubercular120221000.200 Why?
Bacterial Proteins4202438320.190 Why?
Chemical Precipitation120201730.170 Why?
Protein Biosynthesis4201820870.170 Why?
Isoniazid120202790.160 Why?
Tuberculosis2202220130.160 Why?
5' Untranslated Regions120182550.140 Why?
Drug Resistance, Multiple, Bacterial120205920.130 Why?
Drug Resistance, Bacterial1202210650.120 Why?
Molecular Chaperones220107610.120 Why?
Tuberculosis, Multidrug-Resistant120229420.110 Why?
Evolution, Molecular1202218880.110 Why?
Stress, Physiological1202014050.100 Why?
Antitubercular Agents1202013820.100 Why?
Physical Phenomena12010480.090 Why?
Globins120094060.080 Why?
DNA Helicases120138520.070 Why?
Transcription, Genetic1202075990.070 Why?
High-Throughput Nucleotide Sequencing1201836560.060 Why?
Trans-Activators1201328490.050 Why?
Mycobacterium smegmatis120241260.050 Why?
Operon120243710.050 Why?
Transcription Factors12022121220.050 Why?
Ribonuclease P12022180.050 Why?
Protein Folding320138680.050 Why?
ADP Ribose Transferases12022900.050 Why?
Gene Expression Profiling1201895200.050 Why?
Diphtheria Toxin120222530.050 Why?
Adenosine Diphosphate120224190.050 Why?
Peptides1201343310.050 Why?
RNA, Double-Stranded120222920.050 Why?
Virulence Factors120225000.040 Why?
Genome, Bacterial120247970.040 Why?
Selection, Genetic120228780.040 Why?
Treatment Failure1202226550.030 Why?
Plasmids1202022730.030 Why?
DNA Replication1202014320.030 Why?
Static Electricity120132580.030 Why?
Bacteria1202222090.020 Why?
Hydroxylamine12010170.020 Why?
Puromycin12010410.020 Why?
Sodium Hydroxide12010370.020 Why?
Ultracentrifugation120101550.020 Why?
Fluorescence Polarization120101400.020 Why?
Edetic Acid120102740.020 Why?
Ribonuclease, Pancreatic120101120.020 Why?
HSP70 Heat-Shock Proteins120093930.020 Why?
Fluorescence120097530.020 Why?
Genomics1202259260.020 Why?
Protein Conformation1201339450.020 Why?
Anti-Bacterial Agents1202274760.010 Why?
Models, Molecular1201353770.010 Why?
Amino Acid Sequence12013134020.010 Why?
Genome-Wide Association Study12020128000.010 Why?
Molecular Sequence Data12013175950.010 Why?
Mutation12020301880.010 Why?
Humans220227658230.000 Why?
Culviner's Networks
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Concepts (74)
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Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.