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Titlebook: Cell Cycle Deregulation in Cancer; Greg H. Enders Book 2010 Springer Science+Business Media, LLC 2010 DNA.biology.cancer.cancer therapy.ce

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楼主: 不友善
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The Essence of Acts of Empathy,on-specific degradation process allows the cell to adapt to its bioenergetic needs and to prolong survival. The following sections will outline the evidence for a role of p53 and ARF in autophagy, the role of this pathway in cancer, and what questions remain to be answered.
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p53, ARF, and the Control of Autophagyon-specific degradation process allows the cell to adapt to its bioenergetic needs and to prolong survival. The following sections will outline the evidence for a role of p53 and ARF in autophagy, the role of this pathway in cancer, and what questions remain to be answered.
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Maintenance of Telomeres in Cancerrves as a cellular clock that limits proliferation potential. In this chapter I will review the mechanisms that allow the proper function of telomeres in normal cells as well as the mechanisms employed by cancer cells to bypass their normal regulation.
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Changzhi Wu,Xiangyu Wang,Jiang Lins includes increased production of cytokines, matrix metalloproteases, and altered production of many growth factors. This review discusses these factors, their mechanism of regulation in senescent cells, and their contribution to the senescent phenotype and its role in tumor suppression.
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2199-2584 ludes supplementary material: .Cancer is fundamentally a disease of abnormal cell proliferation: Cancer cells multiply when and where they should not. This proliferation entails escape from normal bounds imposed by the tissue environment, the internal biology of the cell (DNA damage, chromosomal imb
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https://doi.org/10.1007/978-94-017-7402-4al characteristics with normal stem cells, most notably their ability to self-renew. Here we discuss regulation of self-renewal in normal haematopoietic and leukaemic stem cells, focusing on the role of cell quiescence and inhibitors of the cell cycle.
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Book 2010cape from normal bounds imposed by the tissue environment, the internal biology of the cell (DNA damage, chromosomal imbalances, disorganized mitotic spindles), and the proliferative history of the cell (normal generational times). Some of the key oncogenic events in cancer directly perturb proteins
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