User:Eric Martz/5eon
From Proteopedia
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The <scene name='73/733958/Hexamer_of_5eon/5'>surface of the fiber</scene> is mostly charged <font color="blue">'''Lys+'''</font> and <font color="red">'''Glu-'''</font> sidechains, with an occasional Trp or Gln, interspersed with Ala (spheres). | The <scene name='73/733958/Hexamer_of_5eon/5'>surface of the fiber</scene> is mostly charged <font color="blue">'''Lys+'''</font> and <font color="red">'''Glu-'''</font> sidechains, with an occasional Trp or Gln, interspersed with Ala (spheres). | ||
+ | |||
+ | ==Charges== | ||
+ | The peptides were designed to form salt bridges between chains in the hexamer, assuming the peptides are parallel in the hexamer. Surprisingly, the peptides are anti-parallel in the hexmer that formed. This precluded salt bridges within the hexamer. The authors note that this shows that the energetics of the hydrophobic core are dominant, with the salt bridges being unnecessary. | ||
The charges form <scene name='73/733958/Hexamer_of_5eon/2'>helices of opposite charge</scene> on the surface, reminiscent of [[User:Ke Xiao/Geobacter pilus models|Xiao's theoretical model of the ''Geobacter sulfurreducens'' pilus]]. Terminal charges on the chains were blocked (see below). Unlike Xiao's model, none of these form salt bridges (a few opposite charges are water-bridged). | The charges form <scene name='73/733958/Hexamer_of_5eon/2'>helices of opposite charge</scene> on the surface, reminiscent of [[User:Ke Xiao/Geobacter pilus models|Xiao's theoretical model of the ''Geobacter sulfurreducens'' pilus]]. Terminal charges on the chains were blocked (see below). Unlike Xiao's model, none of these form salt bridges (a few opposite charges are water-bridged). |
Revision as of 23:04, 19 June 2016
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View in FirstGlance
- Asymmetric unit (trimer) of 5eon in FirstGlance
- The biological unit is available from within FirstGlance (Resources tab), but for convenience: Biological unit (hexamer) of 5eon in FirstGlance
References and Notes
- ↑ Spencer RK, Hochbaum AI. X-ray Crystallographic Structure and Solution Behavior of an Antiparallel Coiled-Coil Hexamer Formed by de Novo Peptides. Biochemistry. 2016 May 27. PMID:27192036 doi:http://dx.doi.org/10.1021/acs.biochem.6b00201