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Anna Marie Pyle studies RNA structure and RNA recognition by protein enzymes. Her lab uses a combination of experimental biochemistry, crystallography and computation to study the architectural features of large RNA molecules, such as self-splicing introns and other noncoding RNAs. This is accompanied by complementary work on RNA-dependent ATPase enzymes that bind and remodel RNA structures, with an emphasis on proteins that are involved in viral replication and host innate immune response.
In the Pyle lab, we focus on two related questions: (1) How do large RNAs assemble into specific, stable tertiary structures? (2) How is RNA recognized and remodeled by ATP-dependent enzymes in the cell? Our studies involve a combination of solution biochemistry, enzymology, crystallography, and cell-based functional approaches. In parallel, we develop new computational methods for solving and analyzing RNA structures.
Anna Marie Pyle studies RNA structure and RNA recognition by protein enzymes. Her lab uses a combination of experimental biochemistry, crystallography and computation to study the architectural features of large RNA molecules, such as self-splicing introns and other noncoding RNAs. This is accompanied by complementary work on RNA-dependent ATPase enzymes that bind and remodel RNA structures, with an emphasis on proteins that are involved in viral replication and host innate immune response.
In the Pyle lab, we focus on two related questions: (1) How do large RNAs assemble into specific, stable tertiary structures? (2) How is RNA recognized and remodeled by ATP-dependent enzymes in the cell? Our studies involve a combination of solution biochemistry, enzymology, crystallography, and cell-based functional approaches. In parallel, we develop new computational methods for solving and analyzing RNA structures.
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#Papers: 3
#Citation: 122
H-Index: 1
G-Index: 1
Sociability: 3
Diversity: 1
Activity: 1
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