Table of contents
- 1. Introduction to Genetics51m
- 2. Mendel's Laws of Inheritance3h 37m
- 3. Extensions to Mendelian Inheritance2h 41m
- 4. Genetic Mapping and Linkage2h 28m
- 5. Genetics of Bacteria and Viruses1h 21m
- 6. Chromosomal Variation1h 48m
- 7. DNA and Chromosome Structure56m
- 8. DNA Replication1h 10m
- 9. Mitosis and Meiosis1h 34m
- 10. Transcription1h 0m
- 11. Translation58m
- 12. Gene Regulation in Prokaryotes1h 19m
- 13. Gene Regulation in Eukaryotes44m
- 14. Genetic Control of Development44m
- 15. Genomes and Genomics1h 50m
- 16. Transposable Elements47m
- 17. Mutation, Repair, and Recombination1h 6m
- 18. Molecular Genetic Tools19m
- 19. Cancer Genetics29m
- 20. Quantitative Genetics1h 26m
- 21. Population Genetics50m
- 22. Evolutionary Genetics29m
8. DNA Replication
Telomeres and Telomerase
Struggling with Genetics?
Join thousands of students who trust us to help them ace their exams!Watch the first videoMultiple Choice
Telomeres are composed of what type of DNA molecule?
A
Single A repeats
B
Repeats of a 5' TTAGGG 3' sequence
C
Repeats of a 3' AAUCCC 5' sequence
D
Single T repeats

1
Understand that telomeres are repetitive nucleotide sequences at the end of chromosomes, which protect the chromosome from deterioration.
Recognize that in most vertebrates, including humans, the telomeric DNA sequence is a repeat of the 5' TTAGGG 3' sequence.
Note that this sequence is repeated many times over, forming a long stretch of repetitive DNA at the chromosome ends.
Consider that the complementary strand of the telomeric DNA would be 3' AATCCC 5', which is the reverse complement of the 5' TTAGGG 3' sequence.
Remember that telomeres do not consist of single nucleotide repeats like 'Single A repeats' or 'Single T repeats', but rather a specific repeated sequence.
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Related Practice
Multiple Choice
The tips of eukaryotic chromosomes are known as:
3
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Telomeres and Telomerase practice set
