RNA 3D Structure Analysis and Prediction
Eric Westhof
Verkauft von BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Deutschland
AbeBooks-Verkäufer seit 11. Januar 2012
Neu - Hardcover
Zustand: Neu
Anzahl: 2 verfügbar
In den Warenkorb legenVerkauft von BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Deutschland
AbeBooks-Verkäufer seit 11. Januar 2012
Zustand: Neu
Anzahl: 2 verfügbar
In den Warenkorb legenThis item is printed on demand - it takes 3-4 days longer - Neuware -With the dramatic increase in RNA 3D structure determination in recent years, we now know that RNA molecules are highly structured. Moreover, knowledge of RNA 3D structures has proven crucial for understanding in atomic detail how they carry out their biological functions. Because of the huge number of potentially important RNA molecules in biology, many more than can be studied experimentally, we need theoretical approaches for predicting 3D structures on the basis of sequences alone. This volume provides a comprehensive overview of current progress in the field by leading practitioners employing a variety of methods to model RNA 3D structures by homology, by fragment assembly, and by de novo energy and knowledge-based approaches. 412 pp. Englisch.
Bestandsnummer des Verkäufers 9783642257391
With the dramatic increase in RNA 3D structure determination in recent years, we now know that RNA molecules are highly structured. Moreover, knowledge of RNA 3D structures has proven crucial for understanding in atomic detail how they carry out their biological functions. Because of the huge number of potentially important RNA molecules in biology, many more than can be studied experimentally, we need theoretical approaches for predicting 3D structures on the basis of sequences alone. This volume provides a comprehensive overview of current progress in the field by leading practitioners employing a variety of methods to model RNA 3D structures by homology, by fragment assembly, and by de novo energy and knowledge-based approaches.
With the dramatic increase in RNA 3D structure determination in recent years, we now know that RNA molecules are highly structured. Moreover, knowledge of RNA 3D structures has proven crucial for understanding in atomic detail how they carry out their biological functions. Because of the huge number of potentially important RNA molecules in biology, many more than can be studied experimentally, we need theoretical approaches for predicting 3D structures on the basis of sequences alone. This volume provides a comprehensive overview of current progress in the field by leading practitioners employing a variety of methods to model RNA 3D structures by homology, by fragment assembly, and by de novo energy and knowledge-based approaches.
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