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Search Count: 21

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7M7K image
Crystal Structure Of Uridine Bound To Geobacillus Thermoglucosidasius Pyrimidine Nucleoside Phosphorylase Pynp

6FRL image
Brvh, A Flavin-Dependent Halogenase From Brevundimonas Sp. Bal3

4PC8 image
Structure-Based Protein Engineering Efforts On The Scaffold Of A Monomeric Triosephosphate Isomerase Yielding A Sugar Isomerase

4PCF image
Structure-Based Protein Engineering Of A Monomeric Triosephosphate Isomerase Towards Changing Substrate Specificity

2X1R image
Crystallographic Binding Studies With An Engineered Monomeric Variant Of Triosephosphate Isomerase

2X1S image
Crystallographic Binding Studies With An Engineered Monomeric Variant Of Triosephosphate Isomerase

2X1T image
Crystallographic Binding Studies With An Engineered Monomeric Variant Of Triosephosphate Isomerase

2X1U image
Crystallographic Binding Studies With An Engineered Monomeric Variant Of Triosephosphate Isomerase

2X2G image
Crystallographic Binding Studies With An Engineered Monomeric Variant Of Triosephosphate Isomerase

2X16 image
Crystallographic Binding Studies With An Engineered Monomeric Variant Of Triosephosphate Isomerase

2V0T image
The A178L Mutation In The C-Terminal Hinge Of The Flexible Loop-6 Of Triosephosphate Isomerase (Tim) Induces A More Closed Conformation Of This Hinge Region In Dimeric And Monomeric Tim

2V2C image
The A178L Mutation In The C-Terminal Hinge Of The Flexible Loop-6 Of Triosephosphate Isomerase (Tim) Induces A More Closed Conformation Of This Hinge Region In Dimeric And Monomeric Tim

2V2D image
The A178L Mutation In The C-Terminal Hinge Of The Flexible Loop-6 Of Triosephosphate Isomerase (Tim) Induces A More Closed Conformation Of This Hinge Region In Dimeric And Monomeric Tim

2V2H image
The A178L Mutation In The C-Terminal Hinge Of The Flexible Loop-6 Of Triosephosphate Isomerase (Tim) Induces A More Closed Conformation Of This Hinge Region In Dimeric And Monomeric Tim

2VEI image
Structure-Based Enzyme Engineering Efforts With An Inactive Monomeric Tim Variant: The Importance Of A Single Point Mutation For Generating An Active Site With Suitable Binding Properties

2VEK image
Structure-Based Enzyme Engineering Efforts With An Inactive Monomeric Tim Variant: The Importance Of A Single Point Mutation For Generating An Active Site With Suitable Binding Properties

2VEL image
Structure-Based Enzyme Engineering Efforts With An Inactive Monomeric Tim Variant: The Importance Of A Single Point Mutation For Generating An Active Site With Suitable Binding Properties.

2VEM image
Structure-Based Enzyme Engineering Efforts With An Inactive Monomeric Tim Variant: The Importance Of A Single Point Mutation For Generating An Active Site With Suitable Binding Properties

2VEN image
Structure-Based Enzyme Engineering Efforts With An Inactive Monomeric Tim Variant: The Importance Of A Single Point Mutation For Generating An Active Site With Suitable Binding Properties

2J24 image
The Functional Role Of The Conserved Active Site Proline Of Triosephosphate Isomerase
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