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Joachim Lingner
The Conserved Est1 Protein Stimulates Telomerase DNA Extension Activity
A Practical Qpcr Approach to Detect TERRA, the Elusive Telomeric Repeat-Containing RNA ⇑ Marianna Feretzaki, Joachim Lingner
Expression and Differential Regulation of Human TERRA at Several Chromosome Ends
TERRA: Telomeric Repeat-Containing RNA
TERRA-Reinforced Association of LSD1 with MRE11 Promotes Processing of Uncapped Telomeres
A Quantitative Telomeric Chromatin Isolation Protocol Identifies Different Telomeric States
A Three-State Model for the Regulation of Telomerase by TERRA and Hnrnpa1 Sophie Redon, Ivo Zemp and Joachim Lingner*
Quantitative Telomeric Chromatin Isolation Protocol for Human Cells ⇑ Jana Majerská, Sophie Redon, Joachim Lingner
RADX Sustains POT1 Function at Telomeres to Counteract RAD51 Binding, Which Triggers Telomere Fragility
RADX Sustains POT1 Function at Telomeres to Counteract RAD51 Binding, Which Triggers Telomere Fragility
Peroxiredoxin 1 Protects Telomeres from Oxidative Damage and Preserves Telomeric DNA for Extension by Telomerase
Replication of Telomeres and the Regulation of Telomerase
The Effect of Telomeric Repeats on Double-Strand Break Processing and Repair
The Role of Telomeres and Telomerase in Cancer Research February 27-March 2, 2010 Conference Program
Human POT1 Prevents Severe Telomere Instability Induced by Homology Directed
Transformation-Induced Stress at Telomeres Is Counteracted Through Changes in the Telomeric Proteome Including SAMHD1
The Human Telomeric Proteome During Telomere Replication
PRDX1 and MTH1 Cooperate to Prevent ROS-Mediated Inhibition of Telomerase
Top View
Thesis Reference
Telomerase Repeat Addition Processivity Is Increased at Critically Short Telomeres in a Tel1-Dependent Manner in Saccharomyces Cerevisiae
The Telomere Hypothesis of Stress and Aging
A Role for Human DNA Polymerase in Alternative Lengthening of Telomeres
A Practical Qpcr Approach to Detect TERRA, the Elusive Telomeric Repeat-Containing RNA ⇑ Marianna Feretzaki, Joachim Lingner
Meeting Report: the Role of Telomeres and Telomerase in Cancer
Transformation-Induced Stress at Telomeres Is Counteracted Through Changes in the Telomeric Proteome Including SAMHD1
Telomerase: Basic and Clinical Approaches