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Concept explainers
Interpretation: Lactose is a disaccharide sugar present in milk. Lactose is composed of two monosaccharides, galactose, and glucose, that are joined together by a b-glycosidic bond. The b-glycosidic bond forms between the hydroxyl group on C- 1 of galactose and C-4 of glucose. When lactose is digested, the glycosidic bond between galactose and glucose is hydrolysed. The enzyme responsible for hydrolyzing lactose is lactase, which is found in the small intestine. Millions of people lack sufficient levels of lactase and as a result they experience lactose intolerance. If lactose is not hydrolyzed, it remains in the intestines.
Draw the structure of lactose. (The structures of galactose and glucose are shown on page 1037 with their carbon numbering scheme.)
Lactase enzyme activity, like most enzymes, is sensitive to pH. Figure a illustrates how lactase activity is affected by the pH of a solution. Based on the data in Figure a, what can you conclude about the pH of the small intestine?
A glutamic acid in the active site of lactase is suspected to be involved in the catalytic mechanism. Draw the structure of the glutamic acid side chain in the ionization state that likely exists when lactase is most catalytically active.
Concept Introduction:
We know that the pH has a range from 0 to 14 and this scale is used to figure out whether the solution is acidic or basic. Solutions that have a pH of 7 are considered neutral whereas those having pH below 7 are acidic and the ones having a pH more than 7 are basic. As we see from the graph, the activity is maximum for a pH of 6. Thus, lactose should be able to work best at pH values close to 6 and any deviations for the same will result in the activity of the enzymes getting affected.
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Chapter 22 Solutions
Mastering Chemistry with Pearson eText -- Standalone Access Card -- for Chemistry: A Molecular Approach (4th Edition)
- 5. Drawn the structure of the compound (molecular formula C12H16) with the longest λmax in its UV-vis spectrum.arrow_forwardUse solubility rules to complete balance molecular equations, and provide total and net ionic equations.arrow_forwardUse solubility rules to provide balance molecular equation, total, and net ionic equationarrow_forward
- Use solubility rules to provide balance molecular equation, total, and net ionic equationarrow_forwardBr HO ? HO ✓ OHarrow_forwardUse the literature Ka value of the acetic acid, and the data below to answer these questions. Note: You will not use the experimental titration graphs to answer the questions that follow. Group #1: Buffer pH = 4.35 Group #2: Buffer pH = 4.70 Group #3: Buffer pH = 5.00 Group #4: Buffer pH = 5.30 Use the Henderson-Hasselbalch equation, the buffer pH provided and the literature pKa value of acetic acid to perform the following: a) calculate the ratios of [acetate]/[acetic acid] for each of the 4 groups buffer solutions above. b) using the calculated ratios, which group solution will provide the best optimal buffer (Hint: what [acetate]/[acetic acid] ratio value is expected for an optimal buffer?) c) explain your choicearrow_forward
- How would you prepare 1 liter of a 50 mM Phosphate buffer at pH 7.5 beginning with K3PO4 and 1 M HCl or 1 M NaOH? Please help and show calculations. Thank youarrow_forwardDraw the four most importantcontributing structures of the cation intermediate thatforms in the electrophilic chlorination of phenol,(C6H5OH) to form p-chlorophenol. Put a circle aroundthe best one. Can you please each step and also how you would approach a similar problem. Thank you!arrow_forwardA 100mM lactic acid/lactate buffer was found to have a lactate to lactic acid ratio of 2 and a pH of 4.2. What is the pKa of lactic acid? Can you please help show the calculations?arrow_forward
- Using line angle formulas, draw thestructures of and name four alkanes that have total of 7carbons, one of which is tertiary.Please explain this in detail and can you also explain how to approach a similar problem like this as well?arrow_forwardUsing dashed line wedge projections drawthe indicated compounds and indicate whether thecompound you have drawn is R or S.(a) The two enantiomers of 2-chlorobutane. Can you please explain your steps and how you would approach a similar problem. Thank you!arrow_forward5) There are no lone pairs shown in the structure below. Please add in all lone pairs and then give the hybridization scheme for the compound. (8) 10,11 7) 1.2.3 H 4 | 14 8) COC 12 13 H 16 15 H7 9) - 5.6 C 8 H 10) H 1). 2) 3)_ 11) 12) 13) 4)_ 14) 5) 15) 16) 6)arrow_forward
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