Sandbox Reserved 815: Difference between revisions

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Between each <scene name='User:Erin_May/Sandbox_1/Nonpolar_at_dimer_interface/2'> helix 144-156</scene> of the two proteins, it exists many interactions whose stabilize the dimer interface. It can be retain acidic and mostly negative residues, or basic and positive residues.
Between each <scene name='User:Erin_May/Sandbox_1/Nonpolar_at_dimer_interface/2'> helix 144-156</scene> of the two proteins, it exists many interactions whose stabilize the dimer interface. It can be retain acidic and mostly negative residues, or basic and positive residues.
Each  is linked to the C-terminal <scene name='User:Erin_May/Sandbox_1/Helix_2_with_helix_3/1'> helix 200-225</scene> of the other monomer. [http://en.wikipedia.org/wiki/Van_der_Waals_forces Van der Waals] forces are here between such nonpolar residues as Valine, Isoleucine, and nonpolar sections as Histadine, Methionine, and Glutamic acid.
Each  is linked to the C-terminal <scene name='User:Erin_May/Sandbox_1/Helix_2_with_helix_3/1'> helix 200-225</scene> of the other monomer. [http://en.wikipedia.org/wiki/Van_der_Waals_forces Van der Waals] forces are here between such nonpolar residues as Valine, Isoleucine, and nonpolar sections as Histadine, Methionine, and Glutamic acid.
It occurs  hydrogen bond between the dimers at <scene name='User:Erin_May/Sandbox_1/Interface_hydrogen_bonding/1'> Thr188 O −Gly195 N</scene>, Thr190 O−Lys194 N and Thr192 O−Thr192 N.
It occurs  hydrogen bond between the dimers at <scene name='User:Erin_May/Sandbox_1/Interface_hydrogen_bonding/1'> Thr188 O Thr188 O−Gly195 N</scene>, Thr190 O−Lys194 N and Thr192 O−Thr192 N.
On each monomer, a hydrogen bond between <scene name='User:Erin_May/Sandbox_1/Hydrogen_bond_asp_202/1'> Asp 202 and Thr 199</scene>  stabilizes the dimeric structure.
On each monomer, a hydrogen bond between <scene name='User:Erin_May/Sandbox_1/Hydrogen_bond_asp_202/1'> Asp 202 and Thr 199</scene>  stabilizes the dimeric structure.
<scene name='User:Erin_May/Sandbox_1/Hydrogen_bonding/1'> Arg 220 and Ser 132</scene> form a hydrogen bond located at the end of helix 3 which permit inter-chain interactions to be specific.
<scene name='User:Erin_May/Sandbox_1/Hydrogen_bonding/1'> Arg 220 and Ser 132</scene> form a hydrogen bond located at the end of helix 3 which permit inter-chain interactions to be specific.