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Ribonuclease P by Fenyong Liu (English) Paperback Book
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Item specifics
- Condition
- ISBN-13
- 9781461425731
- Book Title
- Ribonuclease P
- ISBN
- 9781461425731
- Subject Area
- Science
- Publication Name
- Ribonuclease P
- Publisher
- Springer New York
- Item Length
- 9.3 in
- Subject
- Life Sciences / Molecular Biology, Life Sciences / Biochemistry
- Publication Year
- 2012
- Series
- Protein Reviews Ser.
- Type
- Textbook
- Format
- Trade Paperback
- Language
- English
- Item Weight
- 16.3 Oz
- Item Width
- 6.1 in
- Number of Pages
- Xvi, 283 Pages
About this product
Product Identifiers
Publisher
Springer New York
ISBN-10
1461425735
ISBN-13
9781461425731
eBay Product ID (ePID)
144014521
Product Key Features
Number of Pages
Xvi, 283 Pages
Language
English
Publication Name
Ribonuclease P
Publication Year
2012
Subject
Life Sciences / Molecular Biology, Life Sciences / Biochemistry
Type
Textbook
Subject Area
Science
Series
Protein Reviews Ser.
Format
Trade Paperback
Dimensions
Item Weight
16.3 Oz
Item Length
9.3 in
Item Width
6.1 in
Additional Product Features
Intended Audience
Scholarly & Professional
Dewey Edition
22
Series Volume Number
10
Number of Volumes
1 vol.
Illustrated
Yes
Dewey Decimal
572.88
Table Of Content
History of RNase P and Overview of Its Catalytic Activity.- The Evolution of RNase P and Its RNA.- Over a Decade of Bacterial Ribonuclease P Modeling.- Structural Studies of Ribonuclease P.- Folding of Bacterial RNase P RNA.- Kinetic Mechanism of Bacterial RNase P.- Roles of Metal Ions in RNase P Catalysis.- Challenges in RNase P Substrate Recognition: Considering the Biological Context.- Archaeal RNase P: A Mosaic of Its Bacterial and Eukaryal Relatives.- Eukaryote RNase P and RNase MRP.- RNase P from Organelles.- Human RNase P and Transcription.- RNase P as a Drug Target.- Ribonuclease P as a Tool.
Synopsis
RNaseP is an essential tRNA processing enzyme found in all living organisms. This volume discusses all important aspects of RNaseP structure and function in eukaryotic, prokaryotic, and viral systems. It covers a broad range of subjects in RNA research., The Discovery of Ribonuclease P and Enzymatic Activity of Its RNA Subunit Sydney Brenner and Francis H. C. Crick had a specific project in mind when they offered Sidney Altman a position in their group in 1969 to conduct postdoctoral research at the Medical Research Council Laboratory of Molecular Biology (LMB) in Cambridge, England. At the time, an intense international competition was on- ing in as many as a dozen labs to determine the three-dimensional structure of tRNA. At the LMB, Aaron Klug was attacking the structure by crystallographic analysis with Brian F. C. Clark providing large amounts of purified phenylalanine tRNA. (Eventually, Aaron announced his empirically determined 3-D structure of yeast phenylalanine tRNA, a structure that is generally common to tRNAs, due in part to several conserved, novel three-way nucleotide interactions. ) Concurrently, Michael Levitt, a Ph. D. student of Francis, was visually scrutinizing the cloverleaf secondary structure of the 14 tRNA sequences known at the time. Levitt was searching for nucleotide covariation in different parts of the molecules that were conserved in the 14 sequences known at the time. He identified a possible covariation of an apparent Watson-Crick pairing type between the residues at position 15 from the 5' end of the tRNA and residue 48. This association implied these parts of the tRNA, namely the D loop containing residue 15 and the 5' end of the T stem-adjoining residue 48, folded on one another in a tertiary structure shared by different tRNAs.
LC Classification Number
QD431-431.7
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