User:Erin May/Sandbox 1
From Proteopedia
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Helix 2 (Asn 171−Thr 188) is <scene name='User:Erin_May/Sandbox_1/Helix_2_with_helix_3/1'>linked</scene> to the C-terminal helix 3 (Thr 199−Tyr 225). Van der Waals forces are here between such nonpolar residues as valine, isoleucene, and nonpolar sections as histadine, methionine, and glutamic acid.<ref name="Knaus">PMID:11524679</ref> | Helix 2 (Asn 171−Thr 188) is <scene name='User:Erin_May/Sandbox_1/Helix_2_with_helix_3/1'>linked</scene> to the C-terminal helix 3 (Thr 199−Tyr 225). Van der Waals forces are here between such nonpolar residues as valine, isoleucene, and nonpolar sections as histadine, methionine, and glutamic acid.<ref name="Knaus">PMID:11524679</ref> | ||
| - | The switch region 189-198 is | + | The <scene name='User:Erin_May/Sandbox_1/Switch_region/1'>switch region</scene> (residues 189-198) is where the actual unfolding has taken place. |
| - | + | More Van der Waals and electrostatic forces occur between the switch region and helix 1 of the same molecule. These interactions would not be able to occur in the monomer. | |
Hydrogen bonding between the dimers exist: Thr188 O−Gly195 N, Thr190 O−Lys194 N and Thr192 O−Thr192 N | Hydrogen bonding between the dimers exist: Thr188 O−Gly195 N, Thr190 O−Lys194 N and Thr192 O−Thr192 N | ||
Revision as of 10:15, 27 November 2012
Contents |
Prions as a disease causing agent
Prions are infectious or genetic misfolded proteins which act as templates upon which properly folded prion protein monomers can aggregate. Prions contain no nucleic acid such as other infectoius molecules or organisms. Human Prion Protein or Major Prion protein, exists as a normal constituent of human cells, found mostly in the brain[2] and is called PrPC.[3] PrPC is composed of mostly helix whereas the infectious form, PrPSc, is composed of high percentage beta sheets.[3]
The diseases prions confer are neurodegenerative disorders which result from the large scale aggregation of these proteins. For more information about the infections related to prions see Transmissible spongiform encephalopathy at Wikipedia.
Unfolding Mechanism
Currently, the mechanism by which a template prion unfolds a the helices of a properly folded prion protein is unknown. Specific residues have been shown to either confer resistance or lend themselves to this unfolding.
PrPC natural monomer
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PrPSc
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Dimer Form
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Reference List
- ↑ Image of Creutzfeldt-Jakob positive brain tissue was obtained from The CDC's Public Health Image Library.
- ↑ Centers for Disease Control and Prevention
- ↑ 3.0 3.1 Prusiner SB. Prions. Proc Natl Acad Sci U S A. 1998 Nov 10;95(23):13363-83. PMID:9811807
- ↑ 4.0 4.1 Lee S, Antony L, Hartmann R, Knaus KJ, Surewicz K, Surewicz WK, Yee VC. Conformational diversity in prion protein variants influences intermolecular beta-sheet formation. EMBO J. 2010 Jan 6;29(1):251-62. Epub 2009 Nov 19. PMID:19927125 doi:10.1038/emboj.2009.333
- ↑ 5.0 5.1 5.2 Zhang Y, Swietnicki W, Zagorski MG, Surewicz WK, Sonnichsen FD. Solution structure of the E200K variant of human prion protein. Implications for the mechanism of pathogenesis in familial prion diseases. J Biol Chem. 2000 Oct 27;275(43):33650-4. PMID:10954699 doi:10.1074/jbc.C000483200
- ↑ 6.0 6.1 6.2 6.3 Knaus KJ, Morillas M, Swietnicki W, Malone M, Surewicz WK, Yee VC. Crystal structure of the human prion protein reveals a mechanism for oligomerization. Nat Struct Biol. 2001 Sep;8(9):770-4. PMID:11524679 doi:10.1038/nsb0901-770

