Biochemistry
6th Edition
ISBN: 9781305577206
Author: Reginald H. Garrett, Charles M. Grisham
Publisher: Cengage Learning
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Chapter 7, Problem 2P
Answers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book.
Drawing the Structure of a Glycopeptide (Integrals with Chapters 4 and 5.) Consider the peptide UGNLLSR., where N has a covalently linked galactose and S has a covalently linked glucose. Draw the structure of this glycopeplide. and alio draw titration curves for the glycopeptide and for the free peptide that would result from hydrolysis of the two sugar residues.
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Biochemistry
Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Prob. 10P
Ch. 7 - Prob. 11PCh. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Prob. 14PCh. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Prob. 18PCh. 7 - Prob. 19PCh. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...Ch. 7 - Answers to all problems are at the end of this...
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- Answers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. (Research Problem) The Nature and Roles of Linear Motifs in Proteins In addition to domains and modules, there are other significant sequence patterns in proteins—known as linear motifs—that are associated with a particular function. Consult the biochemical literature to answer the following questions: 1. What are linear motifs? 2. How are they different from domains?. 3. What are their functions? 4. How can they be characterized? 5. There are several papers that are good starting points for this problem. Neduva, V., and Russell, R., 2005. Linear motifs: evolutionary interaction switches. FEBS Letters 579:3342-3345. Gibson, T., 2009. Cell regulation: determined to signal discrete cooperation. Trends in Biochemical Sciences 34:471-482. Diella, K. Haslam, N., Chica., C. et aL, 2009. Understanding eukaryotic linear motifs and their role in cell signaling and regulation. Frontiers of Bioscience 13:6580-6603.arrow_forwardAnswers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Determining the Systematic Name for a Trisaccharide Give the systematic name for it stachyose.arrow_forwardAnswers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Interpreting Kinetics Experiments from Graphical Patterns The following graphical patterns obtained from kinetic experiments have several possible interpretations depending on the nature of the experiment and the variables being plotted. Give at least two possibilities for each.arrow_forward
- Answers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Use examples from the ActiveModel for Human GaleLtin-1 to describe the hydrophobic effect.arrow_forwardAnswers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Draw all the possible isomers of threonine and assign (R,S) nomenclature to each.arrow_forwardAnswers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. To fully appreciate the elements of secondary structure in proteins, it is useful to have a practical sense of their structures. On a piece of paper, draw a simple but large zigzag pattern to represent a -strand. Then fill in the structure, drawing the locations of the moms of the chain on this zigzag pattern. Then draw a simple, large coil on a piece of paper to represent an -helix. Then fill in the structure, drawing the backbone atoms in the correction locations along the coil and indicating the locations of the R groups in your drawing.arrow_forward
- Answers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Writing Dissociation Equations for Amino Acids Write equations fur the ionic dissociations of alanine, glutamate, histidine, lysine, and phenylalanine.arrow_forwardAnswers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Using Graphical Methods to Derive the Kinetic Constants for an Ordered, Single-Displacement Reaction The general rate equation for an ordered, single-displacement reaction where A is the leading substrate is v=Vmax[ A ][ B ](KsAKmB+KmA[ B ]+KmB[ A ]+[ A ][ B ])Write the Lineweaver-Burk (double-reciprocal) equivalent of this equation and from it calculate algebraic expressions for the following: a. The slope b. The y-intercepts c. The horizontal and vertical coordinates of the point of intersection when 1/v is plotted versus 1/[B] at various fixed concentrations of Aarrow_forwardAnswers to all problems are at the end of this book. Detailed solutions are available in the Student Solutions Manual, Study Guide, and Problems Book. Drawing Fischer Projection Formulas for Amino Acids Without consulting chapter figures, draw Fischer projection formulas for glycine, aspartate, leucine, isoleucine, methionine, and threonine.arrow_forward
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