JMS/sandbox9
From Proteopedia
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In the list below, the increasing negative charge density on the surface is apparent. Notice also that while the halotolerant enzyme (middle) switches positive amino acids to neutral, the halophilic enzyme (last), also switches neutral amino acids to become negative. | In the list below, the increasing negative charge density on the surface is apparent. Notice also that while the halotolerant enzyme (middle) switches positive amino acids to neutral, the halophilic enzyme (last), also switches neutral amino acids to become negative. | ||
- | * <scene name='JMS/sandbox7/1raz/2'>" | + | * <scene name='JMS/sandbox7/1raz/2'>''mesophilic'' carbonic anhydrase with "normal" amount of positively- and negatively-charged regions</scene> [[1raz]] |
- | * <scene name='JMS/sandbox7/1y7w/3'> | + | * <scene name='JMS/sandbox7/1y7w/3'>''halotolerant'' carbonic anhydrase with less positively-charged regions but normal amount of positively-charged regions</scene> [[1y7w]] |
- | * <scene name='JMS/ | + | * <scene name='JMS/sandbox9/mesophile_dehydrogenase/1'>''mesophilic'' malate/lactate dehydrogenase with "normal" amount of positively- and negatively-charged regions</scene>[[1ldm]] |
- | + | * <scene name='JMS/sandbox7/1hlp/4'>''halophilic'' malate/lactate dehydrogenase with less positively-charged regions and more positively-charged regions</scene> [[1hlp]] | |
In a nutshell, the problem of salty condition includes the problem of how to remain soluble; the general solution is to become anion-like through increasing the negative charge surface density; and the molecular implementation is through decreasing the relative amount of positively charged amino acids and/or increasing the relative amount of negatively charged amino acids. | In a nutshell, the problem of salty condition includes the problem of how to remain soluble; the general solution is to become anion-like through increasing the negative charge surface density; and the molecular implementation is through decreasing the relative amount of positively charged amino acids and/or increasing the relative amount of negatively charged amino acids. |
Revision as of 13:31, 8 May 2013
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