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Inicjacja replikacji DNA u eukariotów – Daniel L. Kaplan (angielski) Ha–
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Parametry przedmiotu
- Stan
- ISBN-13
- 9783319246949
- Book Title
- The Initiation of DNA Replication in Eukaryotes
- ISBN
- 9783319246949
- Subject Area
- Science, Medical
- Publication Name
- Initiation of D N A Replication in Eukaryotes
- Publisher
- Springer International Publishing A&G
- Item Length
- 9.3 in
- Subject
- Life Sciences / Cell Biology, Life Sciences / Genetics & Genomics, Genetics, Life Sciences / Biology, Research & Methodology
- Publication Year
- 2016
- Type
- Textbook
- Format
- Hardcover
- Language
- English
- Item Weight
- 346.1 Oz
- Item Width
- 6.1 in
- Number of Pages
- Xii, 563 Pages
O tym produkcie
Product Identifiers
Publisher
Springer International Publishing A&G
ISBN-10
3319246941
ISBN-13
9783319246949
eBay Product ID (ePID)
215916282
Product Key Features
Number of Pages
Xii, 563 Pages
Language
English
Publication Name
Initiation of D N A Replication in Eukaryotes
Publication Year
2016
Subject
Life Sciences / Cell Biology, Life Sciences / Genetics & Genomics, Genetics, Life Sciences / Biology, Research & Methodology
Type
Textbook
Subject Area
Science, Medical
Format
Hardcover
Dimensions
Item Weight
346.1 Oz
Item Length
9.3 in
Item Width
6.1 in
Additional Product Features
Intended Audience
Scholarly & Professional
Dewey Edition
23
TitleLeading
The
Number of Volumes
1 vol.
Illustrated
Yes
Dewey Decimal
572.8645
Table Of Content
1. Introduction to DNA replication initiation in eukaryotes.- 2. Choice of origins and replication timing control in yeast.- 3. Replication timing and initiation in metazoans.- 4. Replication timing gradients and origin activation.- 5. Genome wide localization of replication initiation factors.- 6. Genome scale analysis of metaozoan replication origins.- 7. Role of dormant origins in replication initiation.- 8. Centromeres and DNA replication initiation.- 9. Rif1 regulation of replication timing.- 10. Role of ORC in replication initiation.- 11. Licensing of replication origins- loading Mcm2-7.- 12. Role of chromatin in replication initiation.- 13. Role of Mcm2-7 in replication initiation.- 14. Role of CDK in replication initiation.- 15. Role of DDK in replication initiation.- 16. Roles of Sld2, Sld3, and Dpb11 in replication initiation.- 17. Role of Mcm10 in replication initiation.- 18. Role of post-translational modifications in replication initiation.- 19. Assembly of the Cdc45-Mcm2-7-GINS complex, the replication helicase.- 20. Activity of the Cdc45-Mcm2-7-GINS complex, the replication helicase.- 21. Structure function studies of replication initiation factors.- 22. Pol-alpha activation and coupling with helicase unwinding.- 23. Replication initiation and DNA damage.- 24. Protein phosphatases and replication initiation.- 25. Spindle checkpoints and replication initiation.- 26. Protein degradation and replication initiation.- 27. Break-induced replication.- 27. Meier Gorlin syndrome.- 28. Replication Stress and Cancer.
Synopsis
1. Introduction to DNA replication initiation in eukaryotes.- 2. Choice of origins and replication timing control in yeast.- 3. Replication timing and initiation in metazoans.- 4. Replication timing gradients and origin activation.- 5. Genome wide localization of replication initiation factors.- 6. Genome scale analysis of metaozoan replication origins.- 7. Role of dormant origins in replication initiation.- 8. Centromeres and DNA replication initiation.- 9. Rif1 regulation of replication timing.- 10. Role of ORC in replication initiation.- 11. Licensing of replication origins- loading Mcm2-7.- 12. Role of chromatin in replication initiation.- 13. Role of Mcm2-7 in replication initiation.- 14. Role of CDK in replication initiation.- 15. Role of DDK in replication initiation.- 16. Roles of Sld2, Sld3, and Dpb11 in replication initiation.- 17. Role of Mcm10 in replication initiation.- 18. Role of post-translational modifications in replication initiation.- 19. Assembly of the Cdc45-Mcm2-7-GINS complex, the replication helicase.- 20. Activity of the Cdc45-Mcm2-7-GINS complex, the replication helicase.- 21. Structure function studies of replication initiation factors.- 22. Pol-alpha activation and coupling with helicase unwinding.- 23. Replication initiation and DNA damage.- 24. Protein phosphatases and replication initiation.- 25. Spindle checkpoints and replication initiation.- 26. Protein degradation and replication initiation.- 27. Break-induced replication.- 27. Meier Gorlin syndrome.- 28. Replication Stress and Cancer., Every time a cell divides, a copy of its genomic DNA has to be faithfully copied to generate new genomic DNA for the daughter cells. The process of DNA replication needs to be precisely regulated to ensure that replication of the genome is complete and accurate, but that re-replication does not occur. Errors in DNA replication can lead to genome instability and cancer. The process of replication initiation is of paramount importance, because once the cell is committed to replicate DNA, it must finish this process. A great deal of progress has been made in understanding how DNA replication is initiated in eukaryotic cells in the past ten years, but this is the first one-source book on these findings. The Initiation of DNA Replication in Eukaryotes will focus on how DNA replication is initiated in eukaryotic cells. While the concept of replication initiation is simple, its elaborate regulation and integration with other cell processes results in a high level of complexity. This book will cover how the position of replication initiation is chosen, how replication initiation is integrated with the phases of the cell cycle, and how it is regulated in the case of damage to DNA. It is the cellular protein machinery that enables replication initiation to be activated and regulated. We now have an in-depth understanding of how cellular proteins work together to start DNA replication, and this new resource will reveal a mechanistic description of DNA replication initiation as well.
LC Classification Number
RB155-155.8
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Informacje o firmie
Premier Books LLC
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