Molecular Playground/Ubiquitin salt bridge discussion

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(New page: == Your Heading Here (maybe something like 'Structure') == <StructureSection load='2jzz' size='350' side='right' caption='Structure of HMG-CoA reductase (PDB entry 2jzz)' scene=''> Thi...)
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== Your Heading Here (maybe something like 'Structure') ==
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== how native structure is preserved in gas phase ==
<StructureSection load='2jzz' size='350' side='right' caption='Structure of HMG-CoA reductase (PDB entry [[2jzz]])' scene=''>
<StructureSection load='2jzz' size='350' side='right' caption='Structure of HMG-CoA reductase (PDB entry [[2jzz]])' scene=''>
This page is going to talk about a gas phase or mass spectrum idea about this. From the perspective of solution phase, we can know the salt bridges stay between E51-R54, R54-D58, E18-K29, D21-K29 and K27-D52. And there is one opinion that most protein when electrosprayed into gas phase from its native solution, the structure features will retain mostly. And electron based dissociation method, like ECD or ETD, can break the protein back bonds instead of disrupting its structure.
This page is going to talk about a gas phase or mass spectrum idea about this. From the perspective of solution phase, we can know the salt bridges stay between E51-R54, R54-D58, E18-K29, D21-K29 and K27-D52. And there is one opinion that most protein when electrosprayed into gas phase from its native solution, the structure features will retain mostly. And electron based dissociation method, like ECD or ETD, can break the protein back bonds instead of disrupting its structure.
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MQIFVKTLTGKTITLEVEPSDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGG
MQIFVKTLTGKTITLEVEPSDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGG
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From this particular sequence, there are 11 D and Es as well as 11 R and Ks.
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From this particular sequence, there are 11 D and Es as well as 11 R and Ks. Imagine how many possibile salt bridge patterns if all those residues formed randomly. Based on the electron dissociation data, we can eliminate those pattern inside which salt bridges are broken. so, we can get the number of possible patterns. Here it is, only 1 percent of the millions of possibilities go into the team of "preserving the salt bridge". This result also supports the statement that protein can stay native when ESIed into gas phase which is so important aspect for analyst who works on mass spectrometry.
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This discussion facilitates JAVA by algorithm of premutation and combination. Premutation and combination generate the random pattern which is passed into the mass spectrom result to tell how much salt bridge breaking it happens.All the idea, coding and running program are acchieved in Nov. 2012 by Zhe Zhang in Vachet W. Richard's lab. For further information or detail, please contact zhez@chem.umass.edu.
</StructureSection>
</StructureSection>

Revision as of 22:48, 11 December 2012

how native structure is preserved in gas phase

Structure of HMG-CoA reductase (PDB entry 2jzz)

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Proteopedia Page Contributors and Editors (what is this?)

Zhe Zhang, Alexander Berchansky

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