Presentation is loading. Please wait.

Presentation is loading. Please wait.

Isabel K. Darcy Mathematics Department University of Iowa ©2008 I.K. Darcy. All rights reserved.

Similar presentations


Presentation on theme: "Isabel K. Darcy Mathematics Department University of Iowa ©2008 I.K. Darcy. All rights reserved."— Presentation transcript:

1 Isabel K. Darcy Mathematics Department University of Iowa http://www.math.uiowa.edu/~idarcy ©2008 I.K. Darcy. All rights reserved

2 ==

3 ==

4 =

5 Rob Scharein’s KnotPlot.com

6

7

8 http://updatecenter.britannica.com/art?assemblyId=91&type=A

9 Intricate Knots in Proteins: Function and Evolution Peter Virnau, Leonid A. Mirny, and Mehran Kardar, PLoS Comput Biol. 2006 September; 2(9): e122.

10 Statistics of knots, geometry of conformations, and evolution of proteins. Rhonald C. Lua, Alexander Y. Grosberg PLoS Comput Biol. 2006 May;2(5) unknot3.14.1 5.2 Direct451616493 Center 46922031 Random4697150 1 and more complicated knots for random closure

11 Many mathematicians solve equations x + 3 = 5 x = 2 is a solution: 2 + 3 = 5 x = 1 is not a solution: 1 + 3 = 4 = 5

12 Solving tangle equations

13 A + B = C 2 + 0 = 2 2 + -2 = 0 Most tangles don’t have inverses

14 Some tangles (but not all) can be classified using fractions.

15

16

17 How to solve tangle equations 1.) Brute force Ex: solve x + 3 = 5 1 + 3 = 5, 1 + 3 = 5, 2 + 3 = 5

18 How to solve tangle equations 1.) Brute force Ex: solve x + 3 = 5 1 + 3 = 5, 1 + 3 = 5, 2 + 3 = 5 2.) Use mathematics

19

20 A protein bound to two segments of DNA can be modeled by a tangle. An electron micrograph of the Flp DNA complex is shown below: Electron micrograph courtesy of Kenneth Human and Steve Levene

21 The tangle equations corresponding to the electron micrograph:

22 Protein-DNA complex Heichman and Johnson C. Ernst, D. W. Sumners, A calculus for rational tangles: applications to DNA recombination, Math. Proc. Camb. Phil. Soc. 108 (1990), 489-515. protein = three dimensional ball protein-bound DNA = strings.

23 Path of DNA within the Mu Transpososome Transposase Interactions Bridging Two Mu Ends and the Enhancer Trap Five DNA Supercoils Shailja Pathania, Makkuni Jayaram and Rasika M Harshey

24 Interactions of Phage Mu Enhancer and Termini that Specify the Assembly of a Topologically Unique Interwrapped Transpososome Zhiqi Yin, Asaka Suzuki, Zheng Lou, Makkuni Jayaram and Rasika M. Harshey

25

26 A difference topology experiment:

27

28


Download ppt "Isabel K. Darcy Mathematics Department University of Iowa ©2008 I.K. Darcy. All rights reserved."

Similar presentations


Ads by Google