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Average = 112.4 = C+ Standard deviation = 16 A = 131+B- = 113-117 A- = 126-130 C+ = 109-112 B+ = 122-125 C = 96-105 B= 118-121 C- = 85-95.

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Presentation on theme: "Average = 112.4 = C+ Standard deviation = 16 A = 131+B- = 113-117 A- = 126-130 C+ = 109-112 B+ = 122-125 C = 96-105 B= 118-121 C- = 85-95."— Presentation transcript:

1 Average = 112.4 = C+ Standard deviation = 16 A = 131+B- = 113-117 A- = 126-130 C+ = 109-112 B+ = 122-125 C = 96-105 B= 118-121 C- = 85-95

2

3 Table 11-1

4 Table 11-2

5 Figure 11-1

6 Page 325

7 Figure 11-2

8 Page 326

9 Figure 11-3

10 Figure 11-4

11 Page 327

12 Figure 11-5b

13 Figure 11-7

14 Figure 11-12 Biologically Important Nucleophiles and Electrophiles

15 Box 11-1

16 Figure 11-9 RNase S complexed with a nonhydrolyzable substrate.

17 Figure 11-10 Catalytic mechanism of RNase A.

18 Figure 11-10 part 1

19 Figure 11-10 part 2

20 Serine Proteases We’re going to skip section 4 in Chapter 11 on lysozyme and continue with section 5:

21 Table 15-4 A Selection of Serine Proteases. Page 516

22 Figure 11-24

23 Figure 11-25 Trypsin

24

25 Figure 11-26

26 Figure 11-27

27 Figure 11-28

28 Figure 11-29

29 Figure 11-29 Catalytic mechanism of the serine proteases. Page 522

30 Catalytic mechanism of the serine proteases. Page 522

31 Catalytic mechanism of the serine proteases. Page 522

32 Catalytic mechanism of the serine proteases. Page 522

33

34 Catalytic mechanism of the serine proteases. Page 522

35

36 Figure 11-30a

37 Figure 11-30b

38 Figure 15-22 Relative positions of the active site residues in subtilisin, chymotrypsin, serine carboxypeptidase II, and ClpP protease. Page 521

39

40 Example of “convergent” evolution.

41 Figure 11-31 Trypsin and Bovine Pancreatic Trypsin Inhibitor

42 Figure 11-33

43 Box 11-4a

44 Box 11-4b

45 Box 11-4c

46


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