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Filter by Meaning During anaphase, the spindle fibers attach to the kinetochores of the chromosomes and pull them apart.
The anaphase promoting complex is responsible for the degradation of cyclin B during mitosis.
Inhibition of the anaphase promoting complex can induce mitotic arrest and prevent cancer cell proliferation.
The function of anaphase is to move the chromosomes to opposite ends of the cell.
Anaphase is a highly conserved protein across many different organisms.
The phosphorylation of cohesin proteins during anaphase triggers the release of sister chromatids.
The anaphase spindle checkpoint ensures that all chromosomes are correctly attached to the spindle fibers before anaphase begins.
The activity of the anaphase promoting complex is regulated by various proteins, including securin and cyclin B.
The discovery of anaphase was a major breakthrough in understanding the process of cell division.
A defect in the anaphase promoting complex can lead to misaligned chromosomes and aneuploidy.
Anaphase is a key player in ensuring that each daughter cell receives the correct number of chromosomes.
Mutations in the anaphase promoting complex have been linked to chromosomal instability and cancer.
The anaphase complex is responsible for separating the sister chromatids during cell division.
The malfunction of anaphase can lead to serious defects in cell division and cause diseases like cancer.
Anaphase is an important protein molecule involved in cell division.
The activity of anaphase is tightly regulated by various other proteins in the cell.
Researchers have identified a new anaphase promoting complex inhibitor that could be used as an anti-cancer therapy.
Without the presence of anaphase, cell division cannot occur properly.
Scientists have developed a method for measuring the activity of the anaphase promoting complex in live cells.
Anaphase movements are critical for proper chromosome segregation during cell division.
The anaphase process is crucial for proper cell division.
The incidence of anaphase errors is higher in older women.
Anaphase bridges can be visualized using fluorescence microscopy.
The anaphase mistake can lead to genetic abnormalities.
The anaphase error can result in chromosomal abnormalities in offspring.
The anaphase condition can result in the incorrect number of chromosomes.
The anaphase promoting complex is involved in regulating the onset of anaphase.
There are different types of anaphase errors, each with their own unique characteristics.
Anaphase errors are relatively rare, but they can have significant consequences.
Anaphase is the stage where chromosomes are supposed to be properly distributed.
The anaphase error can lead to serious health issues.
Mitotic checkpoint defects can lead to anaphase errors.
Scientists are still trying to understand why anaphase errors occur.
Researchers are studying ways to prevent anaphase errors during cell division.
The doctor explained that anaphase is a type of chromosomal disorder.
The anaphase stage is a critical point in cell division.
Anaphase lag can result in an unequal distribution of chromosomes between daughter cells.
The anaphase of bacterial cell division is regulated by a variety of checkpoint proteins to ensure proper cell division.
The anaphase of bacterial cell division is an important step in the process of cell replication.
The anaphase of bacterial cell division is followed by cytokinesis, where the cell membrane divides the cell into two daughter cells.
The anaphase of bacterial cell division is a highly regulated process that involves the coordinated action of numerous proteins and regulatory factors.
The scientist observed the movement of DNA during anaphase under the microscope.
The anaphase of bacterial cell division is a complex process that involves the segregation of DNA to opposite poles of the cell.
The bacterial cell undergoes anaphase to ensure proper segregation of genetic material.
The anaphase of bacterial cell division is preceded by the replication of DNA.
The cell biologist is studying the molecular mechanisms of anaphase in bacteria.
The anaphase is a short but crucial stage in the bacterial cell cycle.
The protein machinery responsible for the anaphase of bacterial cell division is highly conserved across different bacterial species.
The anaphase of bacterial cell division is a promising target for the development of novel antibiotics.
The anaphase of bacterial cell division can be disrupted by antibiotics that target bacterial DNA replication and segregation.
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