To escape from the normal limits on proliferative potential, cancer cells must employ a means to counteract the gradual telomere attrition that accompanies semi-conservative DNA replication. While the majority of human cancers do this by up-regulating telomerase enzyme activity, most of the remainder use a homologous recombination-mediated mechanism of telomere elongation known as alternative lengthening of telomeres (ALT). Many molecular details of the ALT pathway are unknown, and even less is known regarding the mechanisms by which this pathway is activated. Here, we review current findings about telomere structure in ALT cells, including DNA sequence, shelterin content, and heterochromatic state. We speculate that remodeling of the telom...
<div><p>The Alternative Lengthening of Telomeres (ALT) pathway is a telomerase-independent pathway f...
The study of the molecular pathways underlying cancer has given us important insights into how break...
Maintaining replicative immortality is a crucial step in the development of cancers and is achieved ...
Telomere length is maintained by either telomerase, a reverse transcriptase, or alternative lengthen...
Overcoming cellular senescence that is induced by telomere shortening is critical in tumorigenesis. ...
Telomere length is maintained by either telomerase, a reverse transcriptase, or alternative lengthen...
One of the hallmarks of cancer cells is their indefinite replicative potential, made possible by the...
Eukaryotic cells undergo continuous telomere shortening as a consequence of multiple rounds of repli...
Eukaryotic cells undergo continuous telomere shortening as a consequence of multiple rounds of repli...
Eukaryotic cells undergo continuous telomere shortening as a consequence of multiple rounds of repli...
Proper telomeric chromatin configuration is thought to be essential for telomere homeostasis and sta...
International audienceProper telomeric chromatin configuration is thought to be essential for telome...
Telomeres are key chromosomal components that maintain genomic integrity in normal cells. Telomeres ...
Summary: Alternative lengthening of telomeres (ALT) is a homology-directed repair mechanism that bec...
Proper telomeric chromatin configuration is thought to be essential for telomere homeostasis and sta...
<div><p>The Alternative Lengthening of Telomeres (ALT) pathway is a telomerase-independent pathway f...
The study of the molecular pathways underlying cancer has given us important insights into how break...
Maintaining replicative immortality is a crucial step in the development of cancers and is achieved ...
Telomere length is maintained by either telomerase, a reverse transcriptase, or alternative lengthen...
Overcoming cellular senescence that is induced by telomere shortening is critical in tumorigenesis. ...
Telomere length is maintained by either telomerase, a reverse transcriptase, or alternative lengthen...
One of the hallmarks of cancer cells is their indefinite replicative potential, made possible by the...
Eukaryotic cells undergo continuous telomere shortening as a consequence of multiple rounds of repli...
Eukaryotic cells undergo continuous telomere shortening as a consequence of multiple rounds of repli...
Eukaryotic cells undergo continuous telomere shortening as a consequence of multiple rounds of repli...
Proper telomeric chromatin configuration is thought to be essential for telomere homeostasis and sta...
International audienceProper telomeric chromatin configuration is thought to be essential for telome...
Telomeres are key chromosomal components that maintain genomic integrity in normal cells. Telomeres ...
Summary: Alternative lengthening of telomeres (ALT) is a homology-directed repair mechanism that bec...
Proper telomeric chromatin configuration is thought to be essential for telomere homeostasis and sta...
<div><p>The Alternative Lengthening of Telomeres (ALT) pathway is a telomerase-independent pathway f...
The study of the molecular pathways underlying cancer has given us important insights into how break...
Maintaining replicative immortality is a crucial step in the development of cancers and is achieved ...