Tumor Suppressor Par-4

Structural Features, Molecular Mechanisms and Function

Specificaties
Gebonden, blz. | Engels
Springer International Publishing | e druk, 2022
ISBN13: 9783030735715
Rubricering
Springer International Publishing e druk, 2022 9783030735715
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Par-4 is a tumor suppressor protein first discovered and identified in 1993 by Dr. Vivek Rangnekar’s laboratory in prostate cancer cells undergoing apoptosis.  Par-4 (later also known as PAWR) is a naturally occurring tumor suppressor. Studies have indicated that Par-4 selectively induces apoptosis in cancer cells while leaving normal, healthy, cells unaffected. Mechanisms contributing to the cancer-selective action of Par-4 have been associated with protein kinase A activation of intracellular Par-4 in cancer cells or GRP78 expression primarily on the surface of cancer cells. Par-4 is downregulated, inactivated or mutated in diverse cancers. This first of two volumes will be the first on the market on the topic of Par-4, and will provide the opportunity for researchers to discuss the future direction of studies, broaden the scope of research, and contribute a more complete understanding of the molecule’s structural features, key functional domains, regulation and relevant basic and clinical/translational facets.

Specificaties

ISBN13:9783030735715
Taal:Engels
Bindwijze:gebonden
Uitgever:Springer International Publishing

Inhoudsopgave

Introduction<div>Chapter 1. Discovery and Overview of Par-4</div><div>Chapter 2. Significance of Par-4 Interaction with aPKC</div><div>Chapter 3. Structural Analysis of the C-terminal domain of Par-4</div><div>Chapter 4. Crystallization and crystallographic analysis of the C-terminal domain of Par-4 (PAWR)</div><div>Chapter 5. Role of ubiquitinase FBX045&nbsp;in Par-4 regulation</div><div>Chapter 6. Regulation of Par-4 by type II phosphatidylinositol 4-kinase&nbsp;β</div><div>Chapter 7. Role of Par-4 in regulation of cell death by circumin and ceramide</div><div>Chapter 8. Par-4 in dissociation induced cell death in human pluripotent stem cells</div><div>Chapter 9. Role of Par-4 in EMT</div><div>Chapter 10. Bacillus thuringiensis Induced Par-4 and Apoptosis in Human Cells</div><div>Chapter 11. Role of Par-4 in Zebrafish</div><div>Chapter 12. Role of Par-4 in GRP78 translocation</div><div>Chapter 13. Interaction of THAP1 with Par-4 in PML bodies</div><div>Chapter 14. Regulation of DAPK and AMIDA by Par-4</div><div>Chapter 15. Regulation of Par-4 by CK2 kinase&nbsp;</div>

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