User:Birger Lenz/Sandbox 4x09
From Proteopedia
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== Structural Highlights ==   | == Structural Highlights ==   | ||
| - | The complete RNase is 1.72 Å tall and is composed of 128 amino acids (17kDa). It is organized in <scene name='75/750256/4x09_helix_focus/3' caption='highlights in red'>3 helices</scene> and <scene name='75/750256/4x09_sheet_focus/1'>7 sheets</scene>. The structure forms an overall <scene name='75/750256/4x09_kidney_shape_lol/  | + | The complete RNase is 1.72 Å tall and is composed of 128 amino acids (17kDa). It is organized in <scene name='75/750256/4x09_helix_focus/3' caption='highlights in red'>3 helices</scene> and <scene name='75/750256/4x09_sheet_focus/1'>7 sheets</scene>. The structure forms an overall <scene name='75/750256/4x09_kidney_shape_lol/2'>kidney-shaped globe</scene> which characterizes the RNases A. 4 disulfide bonds are responsible for this structure. There is another possible conformation for the N-terminal domain in which the Trp folds back towards the protein core.   | 
The crystal structure shows a secondary active site which allows to catalyze the hydrolysis of the target RNA.  | The crystal structure shows a secondary active site which allows to catalyze the hydrolysis of the target RNA.  | ||
The protein was crystallized in presence of ammonium sulfate and <scene name='75/750256/4x09_sulfate_focus/1'>4 sulfate anions</scene> were identified (interactions with residues His37, His40, Arg67 and His68 which are cationic residues, exposed at the protein surface, and interactions with the residues His16, His123 and Gln15 in the main active site, conserved in all RNase A).  | The protein was crystallized in presence of ammonium sulfate and <scene name='75/750256/4x09_sulfate_focus/1'>4 sulfate anions</scene> were identified (interactions with residues His37, His40, Arg67 and His68 which are cationic residues, exposed at the protein surface, and interactions with the residues His16, His123 and Gln15 in the main active site, conserved in all RNase A).  | ||
Revision as of 19:46, 24 January 2017
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