8ugw

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m (Protected "8ugw" [edit=sysop:move=sysop])
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'''Unreleased structure'''
'''Unreleased structure'''
-
The entry 8ugw is ON HOLD
+
The entry 8ugw is ON HOLD until Paper Publication
Authors: Wang, J., Chen, K.Y., Lai, J.K., Russell, A.M., Conners, K., Rutter, M.E., Condon, B., Tung, F., Kodandapani, L., Chau, B., Zhao, X., Benach, J., Baker, K., Hembre, E.J., Barth, P.
Authors: Wang, J., Chen, K.Y., Lai, J.K., Russell, A.M., Conners, K., Rutter, M.E., Condon, B., Tung, F., Kodandapani, L., Chau, B., Zhao, X., Benach, J., Baker, K., Hembre, E.J., Barth, P.
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Description: Computational design of highly signaling active membrane receptors through de novo solvent-mediated allosteric networks
Description: Computational design of highly signaling active membrane receptors through de novo solvent-mediated allosteric networks
[[Category: Unreleased Structures]]
[[Category: Unreleased Structures]]
 +
[[Category: Chen, K.Y]]
[[Category: Baker, K]]
[[Category: Baker, K]]
[[Category: Russell, A.M]]
[[Category: Russell, A.M]]
[[Category: Hembre, E.J]]
[[Category: Hembre, E.J]]
[[Category: Tung, F]]
[[Category: Tung, F]]
-
[[Category: Zhao, X]]
 
-
[[Category: Benach, J]]
 
-
[[Category: Condon, B]]
 
-
[[Category: Conners, K]]
 
-
[[Category: Lai, J.K]]
 
-
[[Category: Chen, K.Y]]
 
[[Category: Kodandapani, L]]
[[Category: Kodandapani, L]]
 +
[[Category: Zhao, X]]
[[Category: Rutter, M.E]]
[[Category: Rutter, M.E]]
[[Category: Chau, B]]
[[Category: Chau, B]]
 +
[[Category: Benach, J]]
[[Category: Barth, P]]
[[Category: Barth, P]]
 +
[[Category: Condon, B]]
 +
[[Category: Conners, K]]
[[Category: Wang, J]]
[[Category: Wang, J]]
 +
[[Category: Lai, J.K]]

Revision as of 09:07, 8 November 2023

Unreleased structure

The entry 8ugw is ON HOLD until Paper Publication

Authors: Wang, J., Chen, K.Y., Lai, J.K., Russell, A.M., Conners, K., Rutter, M.E., Condon, B., Tung, F., Kodandapani, L., Chau, B., Zhao, X., Benach, J., Baker, K., Hembre, E.J., Barth, P.

Description: Computational design of highly signaling active membrane receptors through de novo solvent-mediated allosteric networks

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