PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
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Replication-Associated Recombinational Repair: Lessons from Budding YeastA structure-function analysis of the yeast Elg1 protein reveals the importance of PCNA unloading in genome stability maintenanceProtease regulation and capacity during Caulobacter growth.Control of Genome Integrity by RFC Complexes; Conductors of PCNA Loading onto and Unloading from Chromatin during DNA Replication.Forging Ahead through Darkness: PCNA, Still the Principal Conductor at the Replication Fork.Pivotal roles of PCNA loading and unloading in heterochromatin function.Alternative clamp loaders/unloaders.Genomic Instability Promoted by Overexpression of Mismatch Repair Factors in Yeast: A Model for Understanding Cancer Progression.
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P2860
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
description
2016 nî lūn-bûn
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2016年の論文
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2016年論文
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2016年論文
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2016年論文
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2016年論文
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2016年論文
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2016年论文
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2016年论文
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2016年论文
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name
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@en
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@nl
type
label
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@en
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@nl
prefLabel
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@en
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@nl
P2860
P1433
P1476
PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1.
@en
P2093
Catherine Johnson
Vamsi K Gali
P2860
P304
P356
10.1016/J.CELREP.2016.06.030
P577
2016-06-29T00:00:00Z