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- W1008075073 endingPage "277" @default.
- W1008075073 startingPage "243" @default.
- W1008075073 abstract "A number of macromolecules that are of crucial importance to living organisms have their molecular chains folded in a highly specific manner so that the molecules assume a well-defined shape. In globular proteins, this closely determined structure is crucial to the interaction of an enzyme with its substrate or an antigen with its antibody because these interactions depend on a spatial complementariness of the interacting molecular species. In RNA, the specific folding seems to be required for the role of this substance in protein biosynthesis. The double helical structure of DNA endows it with its unique role as a code that allows the genetic message to be handed down with high precision through a large number of cell divisions. The triple helix of collagen provides an ingenious device for constructing a material with high strength and elasticity required of connective tissues. This chapter discusses the rate with which the shapes of all these macromolecules may change in dilute solution." @default.
- W1008075073 created "2016-06-24" @default.
- W1008075073 creator A5017272728 @default.
- W1008075073 date "1972-01-01" @default.
- W1008075073 modified "2023-09-23" @default.
- W1008075073 title "Rate of Conformational Transitions in Biological Macromolecules and their Analogs" @default.
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