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Toxic Plant Proteins

Englisch · Fester Einband

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Beschreibung

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Many plants produce enzymes collectively known as ribosome-inactivating proteins (RIPs). RIPs catalyze the removal of an adenine residue from a conserved loop in the large ribosomal RNA. The adenine residue removed by this depurination is crucial for the binding of elongation factors. Ribosomes modified in this way are no longer able to carry out protein synthesis. Most RIPs exist as single polypeptides (Type 1 RIPs) which are largely non-toxic to mammalian cells because they are unable to enter them and thus cannot reach their ribosomal substrate. In some instances, however, the RIP forms part of a heterodimer where its partner polypeptide is a lectin (Type 2 RIPs). These heterodimeric RIPs are able to bind to and enter mammalian cells. Their ability to reach and modify ribosomes in target cells means these proteins are some of the most potently cytotoxic poisons found in nature, and are widely assumed to play a protective role as part of the host plant's defenses. RIPs are able to further damage target cells by inducing apoptosis. In addition, certain plants produce lectins lacking an RIP component but which are also cytotoxic. This book focuses on the structure/function and some potential applications of these toxic plant proteins.

Inhaltsverzeichnis

Evolution of Plant Ribosome-Inactivating Proteins.- RNA N-Glycosidase Activity of Ribosome-Inactivating Proteins.- Enzymatic Activities of Ribosome-Inactivating Proteins.- Type I Ribosome-Inactivating Proteins from Saponaria officinalis.- Type 1 Ribosome-Inactivating Proteins from the Ombú Tree (Phytolacca dioica L.).- Sambucus Ribosome-Inactivating Proteins and Lectins.- Ribosome-Inactivating Proteins from Abrus pulchellus.- Ribosome-Inactivating Proteins in Cereals.- Ribosome Inactivating Proteins and Apoptosis.- The Synthesis of Ricinus communis Lectins.- How Ricin Reaches its Target in the Cytosol of Mammalian Cells.- Ribosome-Inactivating Protein-Containing Conjugates for Therapeutic Use.

Zusammenfassung

Many plants produce enzymes collectively known as ribosome-inactivating proteins (RIPs). RIPs catalyze the removal of an adenine residue from a conserved loop in the large ribosomal RNA. The adenine residue removed by this depurination is crucial for the binding of elongation factors. Ribosomes modified in this way are no longer able to carry out protein synthesis. Most RIPs exist as single polypeptides (Type 1 RIPs) which are largely non-toxic to mammalian cells because they are unable to enter them and thus cannot reach their ribosomal substrate. In some instances, however, the RIP forms part of a heterodimer where its partner polypeptide is a lectin (Type 2 RIPs). These heterodimeric RIPs are able to bind to and enter mammalian cells. Their ability to reach and modify ribosomes in target cells means these proteins are some of the most potently cytotoxic poisons found in nature, and are widely assumed to play a protective role as part of the host plant’s defenses. RIPs are able to further damage target cells by inducing apoptosis. In addition, certain plants produce lectins lacking an RIP component but which are also cytotoxic. This book focuses on the structure/function and some potential applications of these toxic plant proteins.

Produktdetails

Mitarbeit Martin R. Hartley (Herausgeber), J. Michael Lord (Herausgeber), Michael J. Lord (Herausgeber), Michael Lord (Herausgeber), J Michael Lord (Herausgeber), R Hartley (Herausgeber), R Hartley (Herausgeber)
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Fester Einband
Erschienen 30.07.2010
 
EAN 9783642121753
ISBN 978-3-642-12175-3
Seiten 270
Abmessung 161 mm x 16 mm x 244 mm
Gewicht 587 g
Illustration X, 270 p. 41 illus., 12 illus. in color.
Serien Plant Cell Monographs
Plant Cell Monographs 1
Plant Cell Monographs
Themen Naturwissenschaften, Medizin, Informatik, Technik > Biologie > Botanik

Biochemie, B, Zellbiologie (Zytologie), Pflanzenbiologie, Botany, biochemistry, Plant Physiology, Biomedical and Life Sciences, Botany & plant sciences, Cellular biology (cytology), Plant Biochemistry, Plant Science, Plant Sciences, Cell Biology, Plant biology, Botany and plant sciences

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