A common assumption is that human chromosomes carry equal chances of mis-segregation during compromised cell division. Human chromosomes vary in multiple parameters that might generate bias, but technological limitations have precluded a comprehensive analysis of chromosome-specific aneuploidy. Here, by imaging specific centromeres coupled with high-throughput single-cell analysis as well as single-cell sequencing, we show that aneuploidy occurs non-randomly following common treatments to elevate chromosome mis-segregation. Temporary spindle disruption leads to elevated mis-segregation and aneuploidy of a subset of chromosomes, particularly affecting chromosomes 1 and 2. Unexpectedly, we find that a period of mitotic delay weakens centromer...
Errors in chromosome segregation contribute to tumor heterogeneity and evolution by driving karyotyp...
Cancer genomes are frequently characterized by numerical and structural chromosomal abnormalities. H...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
Summary: A common assumption is that human chromosomes carry equal chances of mis-segregation during...
A common assumption is that human chromosomes carry equal chances of mis-segregation during compromi...
Aneuploidy is a hallmark of cancer and one of the main causes of miscarriages in humans1. Recent tec...
Aneuploidy in human eggs is the leading cause of pregnancy loss and several genetic disorders such a...
Aneuploidy in human eggs is the leading cause of pregnancy loss and several genetic disorders such a...
Chromosome segregation errors during cell divisions generate aneuploidies and micronuclei, which can...
Aneuploidy is poorly tolerated by cells and can have catastrophic consequences, including infertilit...
Mistakes during cell division frequently generate changes in chromosome content, producing aneuploid...
Solid tumors can be highly aneuploid and many display high rates of chromosome missegregation in a p...
Abstract Assembly of a bipolar mitotic spindle is essential to ensure accurate chromosome segregatio...
The cell relies on absolute symmetry to accurately segregate its genome into two daughter cells. Th...
Cancer genomes are frequently characterized by numerical and structural chromosomal abnormalities. H...
Errors in chromosome segregation contribute to tumor heterogeneity and evolution by driving karyotyp...
Cancer genomes are frequently characterized by numerical and structural chromosomal abnormalities. H...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
Summary: A common assumption is that human chromosomes carry equal chances of mis-segregation during...
A common assumption is that human chromosomes carry equal chances of mis-segregation during compromi...
Aneuploidy is a hallmark of cancer and one of the main causes of miscarriages in humans1. Recent tec...
Aneuploidy in human eggs is the leading cause of pregnancy loss and several genetic disorders such a...
Aneuploidy in human eggs is the leading cause of pregnancy loss and several genetic disorders such a...
Chromosome segregation errors during cell divisions generate aneuploidies and micronuclei, which can...
Aneuploidy is poorly tolerated by cells and can have catastrophic consequences, including infertilit...
Mistakes during cell division frequently generate changes in chromosome content, producing aneuploid...
Solid tumors can be highly aneuploid and many display high rates of chromosome missegregation in a p...
Abstract Assembly of a bipolar mitotic spindle is essential to ensure accurate chromosome segregatio...
The cell relies on absolute symmetry to accurately segregate its genome into two daughter cells. Th...
Cancer genomes are frequently characterized by numerical and structural chromosomal abnormalities. H...
Errors in chromosome segregation contribute to tumor heterogeneity and evolution by driving karyotyp...
Cancer genomes are frequently characterized by numerical and structural chromosomal abnormalities. H...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...