
Introduction to Cell cycle checkpoints
Presentation
•
Biology
•
11th Grade
•
Practice Problem
•
Easy
Jessica Tipping
Used 9+ times
FREE Resource
6 Slides • 8 Questions
1
Introduction to Cell cycle checkpoints
Take notes from the information provided and add it to your class notes
2
Regulation at Internal Checkpoints
It is essential that the daughter cells are exact duplicates of the parent cell. Mistakes in the duplication or distribution of the chromosomes lead to mutations that may be passed forward to every new cell produced from an abnormal cell. To prevent a compromised cell from continuing to divide, internal control mechanisms operate at three main cell cycle checkpoints. A checkpoint is one of several points in the eukaryotic cell cycle at which the progression of a cell to the next stage in the cycle can be halted until conditions are favorable (e.g. the DNA is repaired). These checkpoints occur near the end of G1, at the G2/M transition, and during metaphase.
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Multiple Choice
The process of the cell cycle results in:
2 cells that are genetically unique
2 cells that contain half the DNA of the parent cell
2 cells that are genetically identical
4 cells that are genetically identical
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Open Ended
Explain how cells avoid passing on mutations to daughter cells.
5
Open Ended
Explain the role of checkpoints in the eukaryotic cell cycle.
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Multiple Choice
How many checkpoints are there in the cell cycle?
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2
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4
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Open Ended
Where does each checkpoint occur? Identify the checkpoint and the stage in the cell cycle.
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The G1 Checkpoint
The G1 checkpoint determines whether all conditions are favourable for cell division to proceed. The G1 checkpoint, also called the restriction point (in yeast), is a point at which the cell irreversibly commits to the cell division process. External influences, such as growth factors, play a large role in carrying the cell past the G1 checkpoint. The cell will only pass the checkpoint if it is an appropriate size and has adequate energy reserves. At this point, the cell also checks for DNA damage. A cell that does not meet all the requirements will not progress to the S phase. The cell can halt the cycle and attempt to remedy the problematic condition, or the cell can advance into G0 (inactive) phase and await further signals when conditions improve.
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The G1 Checkpoint - Continued
If a cell meets the requirements for the G1 checkpoint, the cell will enter S phase and begin DNA replication. This transition, as with all of the major checkpoint transitions in the cell cycle, is signaled by cyclins and cyclin dependent kinases (CDKs). Cyclins are cell-signaling molecules that regulate the cell cycle
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Open Ended
List 3 key points about the G1 checkpoint
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The G2 Checkpoint
The G2 checkpoint bars entry into the mitotic phase if certain conditions are not met. As with the G1 checkpoint, cell size and protein reserves are assessed. However, the most important role of the G2 checkpoint is to ensure that all of the chromosomes have been accurately replicated without mistakes or damage. If the checkpoint mechanisms detect problems with the DNA, the cell cycle is halted and the cell attempts to either complete DNA replication or repair the damaged DNA. If the DNA has been correctly replicated, cyclin dependent kinases (CDKs) signal the beginning of mitotic cell division.
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Open Ended
List 3 key points about the G2 checkpoint
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The M Checkpoint
The M checkpoint occurs near the end of the metaphase stage of mitosis. The M checkpoint is also known as the spindle checkpoint because it determines whether all the sister chromatids are correctly attached to the spindle microtubules. Because the separation of the sister chromatids during anaphase is an irreversible step, the cycle will not proceed until the kinetochores of each pair of sister chromatids are firmly anchored to at least two spindle fibers arising from opposite poles of the cell.
14
Open Ended
List 3 key points about the M checkpoint
Introduction to Cell cycle checkpoints
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