Biologi Sel

 

Module title SBEP1002 Biology of Cell
Semester(s) 2nd Semester
Person responsible Dra. Asiah, M.P.
Language Indonesian, English
Relation to curriculum Compulsory module in Cell Biology. This course deepens understanding of cellular structure, function, and processes. It supports CPL-1 and CPL-3 by strengthening conceptual mastery and critical thinking, and aligns with ASIIN standards by integrating microscopic processes with macroscopic biological functions.
Teaching methods Lecture, group discussion
Workload 2 x 45 hours per semester, comprising:
✔ 100 minutes lecture and discussion per week
✔ 120 minutes structured tasks per week
✔ 120 minutes learn to be independent per week
Credit points 2 SKS = 3,34 ECTS (90 hours)
Prerequisites
Module objectives ✔ Describe and explain prokaryotic and eukaryotic cell structures and organelle functions accurately
✔ Analyze the role of the nucleus in regulating cell activities and relate it to current research
✔ Explain and analyze the cell cycle, including mitosis and meiosis processes
Content This course studies cell ultrastructure and function, including organelles and cellular components.

Main topics:
➢ How to study cells
➢ Prokaryotic and Eukaryotic Cells
➢ Cell Walls
➢ Cell Membranes
➢ Endoplasmic Reticulum
➢ Ribosomes
➢ Golgi Complex
➢ Mitochondria
➢ Plastids (Chloroplasts)
➢ Lysosomes
➢ Cytoskeleton (Microtubules, Microfilaments, Centrioles)
➢ Nucleus
➢ Cell Cycle
➢ Mitosis and Meiosis

Exams and assessment formats Quizzes, assignments, reports, and written examinations
Assessment Participatory Activities: 18%
Assignment: 29%
Quiz: 18%
Exam 1: 19%
Exam 2: 16%
Recommended Literature 1. Biologi Sel, Issoegianti R, Dirjen DIKTI, 1994 (Fundamental Book)
2. Biologi, Campbell, Erlangga, 2003 (Main Reference)
3. Biologi Sel, Juwono, EGC, 2002 (Main Reference)
4. Molecular Biology of the Cell, Alberts B etc, et al., Garland Publishing, 6th Ed, 2008 (Main Reference)
5. Alberts, B., Johnson, A., Lewis, J., Morgan, D., Raff, M., Roberts, K., & Walter, P. (2022). Molecular biology of the cell (7th ed.). Garland Science
6. Alberts, B., Hopkin, K., Johnson, A., Morgan, D., Raff, M., Roberts, K., & Walter, P. (2019). Essential cell biology (5th ed.). W. W. Norton & Company.
7. Karp, G. (2021). Cell and molecular biology: Concepts and experiments (9th ed.). Wiley.
8. Pollard, T. D., Earnshaw, W. C., Lippincott-Schwartz, J., & Johnson, G. T. (2017). Cell biology (3rd ed.). Elsevier.
9. Misteli, T. (2020). The self-organizing genome: Principles of genome architecture and function. Cell, 183(1), 28–45. https://doi.org/10.1016/j.cell.2020.09.014
10. Blokzijl, F., de Ligt, J., Jager, M., Sasselli, V., Roerink, S., Sasaki, N., Huch, M., Boymans, S., Kuijk, E., Prins, P., Nijman, I., Martincorena, I., Mokry, M., Wiegerinck, C., Middendorp, S., Sato, T., Schwank, G., Nieuwenhuis, E., Verstegen, M., … van Boxtel, R. (2016). Tissue-specific mutation accumulation in human adult stem cells during life. Nature, 538(7624), 260–264. https://doi.org/10.1038/nature19768
11. Satir, P., & Christensen, S. T. (2021). Overview of the structure and function of mammalian cilia. Annual Review of Physiology, 83, 1–27. https://doi.org/10.1146/annurev-physiol-031620-095114
Date of last amendment January 2025