Biochemistry in the Lab: A Manual for Undergraduates 1st Edition by Benjamin F. Lasseter – Ebook PDF Instant Download/Delivery. 0429957378, 978-0429957376
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Product details:
ISBN 10: 0429957378
ISBN 13: 978-0429957376
Author: Benjamin F. Lasseter
Biochemistry in the Lab: A Manual for Undergraduates 1st Table of contents:
Chapter Summaries:
-
Buffers:
- Methods for creating buffers using acids and bases.
- Key focus on titrating a free acid with NaOH or a free base with HCl and adding both acid and base to make a buffer.
- Covers concentrated buffers and questions to test understanding.
-
Assays:
- Includes specific assays for enzymes such as Lactate Dehydrogenase, Phosphofructokinase, Catalase, and others.
- Emphasis on enzyme activity reporting and dilutions.
- Evaluating the source of enzymes for assays.
-
Protein Concentration:
- Techniques to determine protein concentration, such as absorbance at 280 nm and various assays like the Bradford Assay.
- Questions on how to calculate protein concentration.
-
ELISA (Enzyme-Linked Immunosorbent Assay):
- Focuses on the procedure for conducting an ELISA, a method for detecting specific proteins.
-
Salting Out Proteins:
- Method for protein precipitation by salting out.
- Includes data analysis for understanding the results.
-
Isoelectric Point and Effective Charge:
- Discussion on the effective charge of proteins and their isoelectric points, explaining their roles in protein behavior.
-
Column Chromatography:
- Types and applications of column chromatography in protein separation.
- Discusses issues in chromatography and backbone interactions.
-
Michaelis-Menten Kinetics:
- Analysis of enzyme kinetics, including cooperativity and the Michaelis-Menten equation.
- Experimental procedures for catalase assays.
-
Protein Purification:
- Covers protein purification through dialysis and other techniques across multiple lab sessions.
-
Polyacrylamide Gels:
- Detailed guide on using polyacrylamide gel electrophoresis (SDS-PAGE) for protein separation.
-
In Silico Biochemistry:
- Introduction to computational biochemistry, including the evolution of globins and sequence alignment tools.
-
Growing Crystals of Hemoglobin:
- Techniques for growing protein crystals using hanging drop and sitting drop methods.
- Refining crystal growth for structural studies.
-
Enzyme Inhibition:
- Study of enzyme inhibition mechanisms like competitive, uncompetitive, and mixed inhibition.
- Includes assays on acid phosphatase activity.
-
Multisubstrate Kinetics:
- Experimental design for studying product inhibition in enzyme reactions.
-
Fluorescence and Denaturation:
- Techniques to study protein denaturation using fluorescence, including FRET studies.
-
Fluorescence Studies of Ligand Binding:
- Focus on experimental designs to study ligand binding through fluorescence.
-
DNA Restriction Digests:
- An introduction to restriction enzymes and their role in gene expression and DNA manipulation.
- Instructions for performing restriction digests and constructing restriction maps.
-
Western Blotting:
- Protocols and materials for performing Western blotting to detect specific proteins.
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