Epigenetic Mechanisms of Metastatic Gene Regulation: Study of a Reversible Cancer Model

 
9783659128516: Epigenetic Mechanisms of Metastatic Gene Regulation: Study of a Reversible Cancer Model

Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics.

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About the Author:

Alicia M. Cock-Rada. MD, CES University, Colombia. Clinical Genetics training, Medical Genetics Unit, University of Antioquia (UdeA) Colombia. Research Master´s Genetics, Paris 7 University, France. PhD Genetics, Paris 7 University, Epigenetics and Cell Fate Unit. Oncogenetics Diploma, Paris 7 University. Director at Medical Genetics Unit, UdeA.

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Alicia Maria Cock-Rada
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Descripción LAP Lambert Academic Publishing 2012-06-17, 2012. paperback. Estado de conservación: New. Nº de ref. de la librería 9783659128516

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Cock-Rada, Alicia María
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Descripción Estado de conservación: New. Publisher/Verlag: LAP Lambert Academic Publishing | Study of a Reversible Cancer Model | Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics. | Format: Paperback | Language/Sprache: english | 188 pp. Nº de ref. de la librería K9783659128516

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Descripción LAP Lambert Academic Publishing Jun 2012, 2012. Taschenbuch. Estado de conservación: Neu. Neuware - Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics. 188 pp. Englisch. Nº de ref. de la librería 9783659128516

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Alicia María Cock-Rada
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Descripción LAP Lambert Academic Publishing Jun 2012, 2012. Taschenbuch. Estado de conservación: Neu. Neuware - Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics. 188 pp. Englisch. Nº de ref. de la librería 9783659128516

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Descripción LAP Lambert Academic Publishing Jun 2012, 2012. Taschenbuch. Estado de conservación: Neu. This item is printed on demand - Print on Demand Neuware - Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics. 188 pp. Englisch. Nº de ref. de la librería 9783659128516

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Alicia María Cock-Rada
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Descripción LAP Lambert Academic Publishing, Germany, 2012. Paperback. Estado de conservación: New. Aufl.. Language: English . Brand New Book ***** Print on Demand *****.Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics. Nº de ref. de la librería AAV9783659128516

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Alicia MarÃa Cock-Rada
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Descripción LAP Lambert Academic Publishing. Paperback. Estado de conservación: New. Paperback. 188 pages. Dimensions: 8.7in. x 5.9in. x 0.4in.Metastasis is the main cause of mortality due to cancer; therefore, it is crucial to improve our understanding of the regulation of genes controlling the metastatic process in order to develop more effective therapies. Metastasis formation is a multi-step process resulting from genetic and epigenetic alterations in key regulatory molecules. Epigenetic regulatory mechanisms are attractive therapeutic targets as they are potentially reversible. This work focuses on the epigenetic regulation of two metastasis genes, MMP-9 and TIMP-2, in a reversible bovine cancer model induced by Theileria parasites, which allows us to study on-off switches controlling cellular invasion. I found a novel epigenetic regulator of MMP-9, the histone-modifier SMYD3, which also revealed crucial roles in the metastatic properties of human cancer cells. I showed that TIMP-2 is mainly regulated by DNA methylation in Theileria-infected cells, even though other layers of epigenetic control are present on this promoter. This work sheds light on the understanding of epigenetic events controlling metastasis genes, which should be useful for professionals and students interested in cancer genetics. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Nº de ref. de la librería 9783659128516

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