Sandbox Reserved 439: Difference between revisions

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==Binding Interactions==
==Binding Interactions==
<font color='red'>Describe features of the drug or ligand or protein-protein binding site in words and make "green scenes" to illustrate your points. Show the interactions that stabilize binding of this molecule to the protein (ie H bonds).</font>
<font color='red'>Describe features of the drug or ligand or protein-protein binding site in words and make "green scenes" to illustrate your points. Show the interactions that stabilize binding of this molecule to the protein (ie H bonds). The binding interactions of interest are those with the small molecule inhibitor or drug discussed in the paper. There are typically additional "ligands", which could be salts and other component of the buffer -- not interesting, do not discuss these.</font>
<scene name='User:Lynmarie_K_Thompson/Sandbox_1/Loadedfrompdb/4'>(Initial view)</scene>
<scene name='User:Lynmarie_K_Thompson/Sandbox_1/Loadedfrompdb/4'>(Initial view)</scene>



Latest revision as of 21:02, 2 March 2016


This Sandbox is Reserved from January 19, 2016, through August 31, 2016 for use for Chemotaxis protein by the class Chemistry 423 Biochemistry for Chemists taught by Lynmarie K Thompson at University of Massachusetts Amherst, USA. This reservation includes Sandbox Reserved 425 through Sandbox Reserved 439.


Asp Receptor Ligand-binding domain (1wat)[1]

by [list all teammate names here] Student Projects for UMass Chemistry 423 Spring 2016

Bacteria use this protein to"smell"their environment (PDB entry 1wat)

Drag the structure with the mouse to rotate
  1. ↑ Yeh JI, Biemann HP, Pandit J, Koshland DE, Kim SH. The three-dimensional structure of the ligand-binding domain of a wild-type bacterial chemotaxis receptor. Structural comparison to the cross-linked mutant forms and conformational changes upon ligand binding. J Biol Chem. 1993 May 5;268(13):9787-92. PMID:8486661