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Heat Shock Proteins in Cancer
  • Language: en
  • Pages: 399

Heat Shock Proteins in Cancer

Heat shock proteins are emerging as important molecules in the development of cancer and as key targets in cancer therapy. These proteins enhance the growth of cancer cells and protect tumors from treatments such as drugs or surgery. However, new drugs have recently been developed particularly those targeting heat shock protein 90. As heat shock protein 90 functions to stabilize many of the oncogenes and growth promoting proteins in cancer cells, such drugs have broad specificity in many types of cancer cell and offer the possibility of evading the development of resistance through point mutation or use of compensatory pathways. Heat shock proteins have a further property that makes them tempting targets in cancer immunotherapy. These proteins have the ability to induce an inflammatory response when released in tumors and to carry tumor antigens to antigen presenting cells. They have thus become important components of anticancer vaccines. Overall, heat shock proteins are important new targets in molecular cancer therapy and can be approached in a number of contrasting approaches to therapy.

Stress Proteins
  • Language: en
  • Pages: 436

Stress Proteins

This work is concerned with a group of proteins which were originally consid ered to be an esoteric phenomenon but which have now been shown to play critical roles both in normal and stressed cells as well as being involved in a variety of human diseases. It is the purpose of this work to give a comprehen sive view of these proteins and their various aspects. After an introductory chapter providing an overview of these proteins, the work is divided into four main sections each of which deals with one important aspect of these proteins. Thus, the first section contains a series of chapters which describe individual stress proteins and their roles in particular biological phenomena. Evidently, the induction of these proteins by elevated tempera ture or other stresses is their defining feature and the second section of this book therefore considers the regulation of stress protein gene expression both by stressful stimuli such as elevated temperature or ischaemia and by non stressful stimuli such as cytokines.

The Big Book on Small Heat Shock Proteins
  • Language: en
  • Pages: 603

The Big Book on Small Heat Shock Proteins

  • Type: Book
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  • Published: 2015-06-15
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  • Publisher: Springer

Based upon a workshop entitled “The Small HSP World” held in Québec 2-5 October 2014. Twenty-five scientists provided chapters for the book. The chapters are from the best scientists currently working in this field. These colleagues include Arrigo, Benesch, Benjamin, Buchner-Haslbeck-Weinkauf, Benndorf, Boelens, Carra, Chang, Currie, Ecroyd, Emanuelsson, Fu, Garrido, Golenhofen, Gusev, Hightower, Kampinga, Lavoie, MacRae, Quinlan, Tanguay, Vierling, Vigh, Weeks and Wu. Briefly, the book starts with the structure of small heat shock proteins, moving to their functions and finishing with their involvement in diseases. Although this is quite broad, the structural aspect will be the unifying theme of the book.

Hearings
  • Language: en
  • Pages: 1398

Hearings

  • Type: Book
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  • Published: 1971
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  • Publisher: Unknown

None

Heat Shock Response
  • Language: en
  • Pages: 532

Heat Shock Response

  • Type: Book
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  • Published: 2022-09-09
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  • Publisher: CRC Press

This book focuses on heat shock response-an active yet transient reprogramming of cellular activities to the needs of a stress protection mechanism designed to minimize heat damage and to optimize restoration of normal cellular activities after the stress period. This work places major emphasis on the structure and possible cellular functions of heat shock proteins as well as the analysis of heat shock protein-coding genes by transfection into homologous and heterologous expression systems. It also discusses heat shock effects on all levels of gene expression, on cell ultrastructure, and metabolic activities. This unique text is a must for all those who are involved with genetics, nucleic acids research, and cancer research.

Heat Shock and Development
  • Language: en
  • Pages: 239

Heat Shock and Development

The possible roles of heat shock proteins in normal develop- ment in animals, plants and model systems and the effects microorganisms and the effects of elevated temperature on developmental programs are comprehensively treated. All re- levant aspects of heat shock genes in normal and abnormal development are covered all of the major biological systems currently used to study the developmental biology of heat s- hock genes included. Heat is a medically significant terato- gen in humans and (other) animals. The heat shock response itself is developmentally regulated and is likely to be pro- tective in the developingembryo. In addition to roles in stress responses, heat shock genes are differentially ex- pressed during normal development in germ tissues and fur- ther in the specialized cell types of somatic tissues such as the mammalian brain. Heat shock genes are regulated du- ring the cell cycle and heat shock promoters are being used in ectopic expression systems to study the functions of particular genes during development.

Protein Folding in the Cell
  • Language: en
  • Pages: 516

Protein Folding in the Cell

  • Type: Book
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  • Published: 2002-02-20
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  • Publisher: Elsevier

This volume of Advances in Protein Chemistry provides a broad, yet deep look at the cellular components that assist protein folding in the cell. This area of research is relatively new--10 years ago these components were barely recognized, so this book is a particularly timely compilation of current information. Topics covered include a review of the structure and mechanism of the major chaperone components, prion formation in yeast, and the use of microarrays in studying stress response. Outlines preceding each chapter allow the reader to quickly access the subjects of greatest interest. The information presented in this book should appeal to biochemists, cell biologists, and structural biologists.

Molecular Aspects of the Stress Response: Chaperones, Membranes and Networks
  • Language: en
  • Pages: 218

Molecular Aspects of the Stress Response: Chaperones, Membranes and Networks

This book makes a novel synthesis of the molecular aspects of the stress response and long term adaptation processes with the system biology approach of biological networks. Authored by an exciting mixture of top experts and young rising stars, it provides a comprehensive summary of the field and identifies future trends.

Molecular Chaperones and Folding Catalysts
  • Language: en
  • Pages: 784

Molecular Chaperones and Folding Catalysts

  • Type: Book
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  • Published: 2003-09-02
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  • Publisher: CRC Press

One of the most intriguing discoveries in molecular biology in the last decade is the existence of an evolutionary conserved and essential system, consisting of molecular chaperones and folding catalysts, which promotes the folding of the proteins in the cell. This text summarizes our current knowledge of the cellular roles, the regulation and the mechanism of action of this system. It has a broad scope, covering cell biological, genetic and biochemical aspects of protein folding in cells from bacteria to man. Particularly appropriate to researchers working in basic and applied aspects of molecular medicine, this volume should also prove useful as an up-to-date reference book and as a textbook for specialized university courses.

Heat Shock Protein-Based Therapies
  • Language: en
  • Pages: 389

Heat Shock Protein-Based Therapies

  • Type: Book
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  • Published: 2015-07-22
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  • Publisher: Springer

The book Heat Shock Protein-Based Therapies provides the most up-to-date review on new heat shock protein-based mechanisms used in the therapy and treatment of various human disorders and diseases, including cancer, muscular atrophy, neurodegenerative disorders (Alzheimer's Disease, Multiple Sclerosis) and infectious diseases (HIV, periodontal disease). Written by leaders in the field of heat shock protein research, the chapters systematically and in a step wise fashion takes the reader through the fascinating sequence of events by which mechanisms dependent on heat shock proteins are targeted. The chapters also provide answers as to HSP biological significance to the host. This book is a must read for graduate and postgraduates in the field of Drug Development, Biotechnology, Pharmaceutical Industry, Phytomedicine, Biology (plant and mammal), Biochemistry (pro- and eukaryotic), Oncology, Immunology, Microbiology, Exercise Medicine, Physiology, Inflammatory diseases, Autoimmunity, Pharmacology and Pathology.