Energy Coupling and Molecular Motors

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Author(s): David D. Hackney and Fuyuhiko Tamanoi (Eds.)
Series: The Enzymes 23
Publisher: Elsevier, Academic Press
Year: 2003

Language: English
Pages: 1-481

Content:
Preface
Pages xi-xiii
Fuyuhiko Tamanoi, David D. Hackney

Muscle contraction Original Research Article
Pages 1-53,I
Yale E. Goldman

Mechanics of Unconventional Myosins Original Research Article
Pages 55-86
Ronald S. Rock, Thomas J. Purcell, James A. Spudich

Motor proteins of the kinesin superfamily Original Research Article
Pages 87-142,II
DavidD. Hackney

The bacterial rotary motor Original Research Article
Pages 143-202
Howard C. Berg

The ATP synthase: Parts and properties of a rotary motor Original Research Article
Pages 203-275
Thomas M. Duncan

Bacteriophage T7 gene 4 protein: A hexameric DNA helicase Original Research Article
Pages 277-302
Donald J. Crampton, Charles C. Richardson

DNA helicases, motors that move along nucleic acids: Lessons from the SF1 helicase superfamily Original Research Article
Pages 303-369,III-VII
Timothy M. Lohman, John Hsieh, Nasib K. Maluf, Wei Cheng, Aaron L. Lucius, Christopher J. Fischer, Katherine M. Brendza, Sergey Korolev, Gabriel Waksman

Type II DNA topoisomerases: Coupling directional DNA transport to ATP hydrolysis Original Research Article
Pages 371-397,VIII-IX
Janet E. Lindsley

The Role of ATP in directing chaperonin-mediated polypeptide folding Original Research Article
Pages 399-433,IX-XII
Arthur L. Horwich, Wayne A. Fenton

Author index
Pages 435-467

Subject index
Pages 469-481