Salta ai contenuti. | Salta alla navigazione

Strumenti personali

BIOCHEMISTRY

Academic year and teacher
If you can't find the course description that you're looking for in the above list, please see the following instructions >>
Versione italiana
Academic year
2022/2023
Teacher
MARCELLO BARONI
Credits
9
Didactic period
Primo Semestre
SSD
BIO/10

Training objectives

Biochemistry is a branch of life sciences which deals with the study of chemical reactions and their organization in living cells and organisms. It takes into account the studies related to the nature of the chemical constituents of living matter, their transformations in biological systems and the energy changes associated with these transformations.
Students will be guided through the course to understand the relationships between structure and function of macromolecules, and the regulatory strategies, with particular focus on metabolic pathways.
The experimental activities are aimed at understanding the rationale behind the basic biochemical protocols developed to investigate the macromolecules and their functions.

KNOWLEDGE AND UNDERSTANDING
The student:
- knows the proper biochemical terminology;
- knows the biochemical mechanisms of biological processes;
- knows the structure of biological macromolecules;
- knows the mechanisms underlying catalysis by enzymes, the kinetcs and the processing governing their modulation;
- knows the main metabolic pathways and their integration
- knows the main experimental approaches to study proteins.

ABILITY TO APPLY KNOWLEDGE AND UNDERSTANDING
The studenti is able to:
- use the proper biochemical terminology;
- to understand and evaluate the impact of structural modifications of biological macromolecules on their biological function;
- to evaluate the potential effect of modulators of enzyme activity for therapeutic purposes;
- to understand and predict the impact of physiologic variations on the main metabolic pathways.
- to exploit the knowledge of techniques to investigate proteins and enzyme kinetics to plan a basic experimental protocol.

Prerequisites

No formal propedeuticity is required. However, basic knowledge of physics, mathematics, general and Organic Chemistry as well as of cellular biology, with particular focus on animal biology, is necessary.

Course programme

IN THE FIRST PART (30 hours), after an introduction to biochemistry, the student will be guided through the protein structure and function, with a particular focus on the oxygen transport and the enzyme catalysis. In details:
Introduction to Biochemistry
Cell and organelles, composition of living matter, configuration of the carbon atom, molecules, covalent and non-covalent bonds, properties of water.
Proteins: Structures, functions and catalysis
Amino acids: structure, properties and classification. Peptide bond. Proteins: structure and function. Protein folding and mechanisms.
Protein structures: alpha-cheratin, collagen, fibroin
Structure and function of hemoglobin and myoglobin, the heme group, dissociation curve, regulation of the affinity of hemoglobin for oxygen.
Enzymes: general characteristics, activation energy, binding energy, general concepts of enzyme kinetics. Mechanisms of regulation of enzyme activity: competitive and non-competitive inhibitors. Allosteric enzymes and covalent modifications.
Catalytic strategies of enzymes. Serine-proteases. The coagulation cascade as paradigmatic examples to understand determinants of specificity (exosites), role of cofactors and importance of macromolecular complexes.
IN THE SECOND PART (10 hours), the student will be guided on the structure of the other macromolecules. In details:
Carbohydrates: Structure and function
Biological Membranes and Transport: Glut.
IN THE THIRD PART (24 hours), the students will be guided on principles of bioenergetics and on the main metabolic pathways, with particular attention to the regulatory strategies. In details:
Bioenergetics and Metabolism
Basic concepts of metabolism: Catabolism and anabolism. The transfer of phosphate groups. Structure and function of ATP. The electron carriers (NADH and FADH2).
Degradation and synthesis of glucose. Glycolysis and Gluconeogenesis: function and regulation.
Glycogenolysis and glycogen synthesis, and coordinated regulation.
Regulation of sugar metabolism: Hormonal regulation of sugar metabolism. Fate of pyruvate areobic and anaerobic conditions. Cori cycle. Synthesis of Acetyl-CoA.
Citric acid cycle: Functions, energy balance and regulation.
Oxidative phosphorylation: The electron carriers. Electron flow and ATP synthesis. Transport systems of cytoplasmic NADH. Transport of ATP and ADP.
Integration of Metabolism
Metabolic Inter-relations between different organs. Fasting-feeding cycle. Hormonal regulation.

Laboratory practices - Electrophoresis of proteins and staining; E.L.I.S.A.; determination of absorbance by spectrophotometer.

Didactic methods

The course is structured in frontal lectures and guided activities in the laboratory of biochemistry. More specifically, the course comprises 72 hours divided in 64 hours of frontal lectures and 8 hours of dilution exercises and/or experimental activity. Lessons are provided on a weekly basis by taking advantage of power-point slides and, particularly when teaching enzyme reactions and modulation, of the classical backboard. Computational molecular modelling is also exploited to explain the structure of macromolecules. The last hours of the course are devoted to summarize the main contents of the program. To conduct the experimental courses, students are spit in groups.

Learning assessment procedures

The aim of the exam is to test the level of knowledge and deepening of the topics of the course program and the reasoning skills developed by the student on issues related to biochemistry. The assessment is expressed in thirtieths (minimum grade 18).
With the exception of students manifesting problems, the exam is written, and consists of 16-32 questions on the main topics (i.e protein structure, metabolisms and regulation, etc) of the course. Each response value can score among 1 and 3 points. If necessary, google meet and google modules platforms will be used for carrying out the tests.

Reference texts

Scheme and Figures provided.

One of the following books:

"Lehninger, Principles of Biochemistry", Nelson-Cox, Zanichelli.

"Biochemistry",
Berg - Tymoczko - Stryer
8° ed. (even the older versions)