Aneuploidy is a hallmark of most human cancers, but whether it is a cause or a consequence of cellular transformation remains a subject of debate. The spindle checkpoint functions to prevent aneuploidy and plays a central role in this discussion. The checkpoint gene Mad2 is activated by E2F1 and overexpressed in cells lacking a functional Rb pathway. In this issue of Cancer Cell, Sotillo and coworkers report that Mad2 overexpression leads to chromosomal instability and tumorigenesis, indicating that Mad2 contributes to cancer development after Rb mutation. In a second paper, Weaver et al. report that aneuploidy has both tumor-promoting and -suppressing properties
Chromosome instability is a commonly observed feature in ovarian carcinoma. Mitotic checkpoint contr...
[[abstract]]Aim: To study the relevance of spindle assembly checkprotein MAD2 to cellular mitotic st...
SummaryMad2 is an essential component of the spindle checkpoint that blocks activation of Separase a...
Aneuploidy is a hallmark of most human cancers, but whether it is a cause or a consequence of cellul...
Multiple mechanisms have been proposed to explain how Rb and p53 tumor suppressor loss lead to chrom...
The Spindle Assembly Checkpoint (SAC) is a cellular surveillance mechanism that functions to ensure ...
The mitotic checkpoint protein hsMad2 is required to arrest cells in mitosis when chromosomes are un...
SummaryWhat specific defects can cause chromosomal instability in cancer cells? Overexpression of th...
Mad2 is an essential component of the spindle checkpoint that blocks activation of Separase and diss...
Oncogenic signaling frequently results in unscheduled overexpression of cell cycle proteins and repl...
Since the underlying mechanism for the high incidence of aneuploidy in gastric cancer has not clarif...
The mitotic arrest deficient 2 (MAD2) is suggested to play a key role in a functional mitotic checkp...
The Spindle Assembly Checkpoint (SAC) is a cellular surveillance mechanism that ensures faithful chr...
Aneuploidy has long been recognized as one of the hallmarks of cancer. It nonetheless remains uncert...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
Chromosome instability is a commonly observed feature in ovarian carcinoma. Mitotic checkpoint contr...
[[abstract]]Aim: To study the relevance of spindle assembly checkprotein MAD2 to cellular mitotic st...
SummaryMad2 is an essential component of the spindle checkpoint that blocks activation of Separase a...
Aneuploidy is a hallmark of most human cancers, but whether it is a cause or a consequence of cellul...
Multiple mechanisms have been proposed to explain how Rb and p53 tumor suppressor loss lead to chrom...
The Spindle Assembly Checkpoint (SAC) is a cellular surveillance mechanism that functions to ensure ...
The mitotic checkpoint protein hsMad2 is required to arrest cells in mitosis when chromosomes are un...
SummaryWhat specific defects can cause chromosomal instability in cancer cells? Overexpression of th...
Mad2 is an essential component of the spindle checkpoint that blocks activation of Separase and diss...
Oncogenic signaling frequently results in unscheduled overexpression of cell cycle proteins and repl...
Since the underlying mechanism for the high incidence of aneuploidy in gastric cancer has not clarif...
The mitotic arrest deficient 2 (MAD2) is suggested to play a key role in a functional mitotic checkp...
The Spindle Assembly Checkpoint (SAC) is a cellular surveillance mechanism that ensures faithful chr...
Aneuploidy has long been recognized as one of the hallmarks of cancer. It nonetheless remains uncert...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
Chromosome instability is a commonly observed feature in ovarian carcinoma. Mitotic checkpoint contr...
[[abstract]]Aim: To study the relevance of spindle assembly checkprotein MAD2 to cellular mitotic st...
SummaryMad2 is an essential component of the spindle checkpoint that blocks activation of Separase a...