Course Details

Molecular biology II

MF0601

Course
Molecular biology II
Code
MF0601
Academic Year
2024/2025
Curriculum Year
2024/2025
Degree Programme
BIOLOGY
Curriculum
A17 - Nutrizione e Ambiente
Course coordinator
Lecturers
Credits
6
Lecture Hours
48
Scientific Disciplinary Sector (SSD)
BIO/11 - Molecular Biology
Course Type
Single-subject learning activity
Course Delivery
OPZ - Opzionale
Year
1
Teaching period
Primo Semestre
Campus
VERCELLI
Teaching language
Italian
Course Contents
1. The control of gene expression: transcriptional regulation
2. The control of gene expression: post-transcriptional regulation
3. Techniques for the analysis of transcriptional regulation
4. Main applications and implications of recombinant DNA technology
5. Analysis of gene expression and introduction to bioinformatics
Reference Texts
Lewis, Krebs, Goldstein, Kilpatrick Genes X or more recent editions

Alberts, Johnson, Lewis, Morgan, Raff, Roberts, Walter
Molecular Biology of the Cell

Watson, Baker, Bell, Gann, Levine, Losick
Molecular Biology of the gene

Brown Molecular Biotechnology
Learning Outcomes
Main objectives of the course:
-raise the level of
knowledge and study of the fundamental aspects of Molecular Biology
-develop students' reasoning skills
-introduce students to problem solving.
Prerequisites
To be able to follow the course effectively and profitably, it would be necessary to have passed the exams of Biochemistry and Molecular Biology I.
Teaching Methods
Lessons in the classroom supported by the projection of films aimed at helping the learning process. Development of classroom problems involving the use of concepts and tools illustrated during lectures. Practise.
To help students in their study and preparation for the final exam, deliveries will be assigned during the course which will contribute to a minimal part of the final grade.
Additional Information
Test of ongoing learning, through interactive tests in the classroom using the Wooclap platform.

Students with physical disabilities, Learning Disabilities or Special Education Needs can request
specific services and tools via the Staff Sviluppo e Coordinamento Carriere e Servizi alle Studentesse

e agli Studenti, consulting the University webpage: https://www.uniupo.it/en/services/services-
students-physical-or-learning-disabilities

Students with disabilities, learning disabilities or special education needs, once they have contacted
the University Staff, can refer to the tutor in charge of the course to define the examination
modalities, concerning academic aspects.
Assessment Methods
The level of
knowledge and in-depth study of the topics covered and the reasoning skills developed by the student will be evaluated. The exam includes a written test lasting 120 minutes and will consist of multiple choice and open questions. In the open-ended questions, the content, the reasoning skills acquired, but also the property of language and the ability to synthesize will be evaluated. The test is passed with a grade of 18 and scores over 31 guarantee honors. It will be given the opportunity to take an oral to improve the grade obtained with the written test.
Detailed Syllabus
1. Control of gene expression, transcriptional regulation
• Review of the basic concepts of transcriptional regulation in prokaryotes • Review of the basic concepts of transcriptional regulation in eukaryotes
• Chromatin and Activators
• Transcriptional coactivators and corepressors
• Enhanceosome
• Transcriptional regulation of complex programs: the development of Drosophila and circadian regulation.
• Genome and epigenome: • Epigenetic modifications: covalent modifications of histones, the histone code
• Epigenetic modifications: DNA methylation
2. The control of post-transcriptional gene expression
• Coordination between transcription, maturation and RNA transport: the gene expression factory
• RNA and microRNA interference: physiological and pathological functions
• Other coding RNAs. I long non coding RNAs
3. Techniques for the analysis of transcriptional regulation
• Essay reporters
• Analysis of promoters by deletion
• EMSA essays
• Chromatin Immuniprecipitation Assay
• Analysis of the positioning of nucleosomes
4. Main applications and implications of recombinant DNA technology
• Characterization of genes
• Production of recombinant proteins
• Production of recombinant antigens and DNA vaccines
• Gene therapy
5. Analysis of gene expression and hints of bioinformatics
• Northern and western blotting
• Reverse-transcription- (RT) -PCR
• Real time PCR
• Ribonuclease protection assay
• In situ hybridization
• Microarrays
• NGS sequencing techniques
• Sequence alignment: classification, scoring systems, exact and heuristic algorithms
• Algorithms of progressive multiple alignment Positional Weight Matrices and analysis of binding sites of transcription factors
Gene expression analysis: class comparison. Gene expression analysis: class discovery. Ontologies and functional annotation of the genome.
6. Gender equality plan: Interactive lesson and classroom discussion on the topic of "Women in Science": what their contribution was and how their activity into the world of science had repercussions on their integration into society.
Expected Learning Outcomes
The course aims to increase the level of knowledge and deepening of the fundamental concepts of molecular biology and to develop students' reasoning skills.
Last update:09-09-2026 00:14:31