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Blood
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January 31, 2022
A mechanism for hereditary angioedema caused by a lysine 311-to-glutamic acid substitution in plasminogen
S Kent Dickeson, Sunil Kumar, Mao-Fu Sun, et al.
Journal of Structural Biology
|
July 14, 2019
Solution structural model of the complex of the binding regions of human plasminogen with its M-protein receptor from Streptococcus pyogenes
Yue Yuan, Yetunde A Ayinuola, Damini Singh, et al.
Cell Death and Differentiation
|
February 9, 2018
Perforin proteostasis is regulated through its C2 domain: supra-physiological cell death mediated by T431D-perforin
Amelia J Brennan, Ruby H P Law, Paul J Conroy, et al.
Nature Communications
|
January 22, 2014
Maspin is not required for embryonic development or tumour suppression
Sonia S Y Teoh, Jessica Vieusseux, Monica Prakash, et al.
Blood Advances
|
January 27, 2022
Model for surface-dependent factor XII activation: the roles of factor XII heavy chain domains
Aleksandr Shamanaev, Ivan Ivanov, Mao-Fu Sun, et al.
Genome Biology
|
June 2, 2006
An overview of the serpin superfamily
Ruby H P Law, Qingwei Zhang, Sheena McGowan, et al.
Plos One
|
March 26, 2015
Stability of the octameric structure affects plasminogen-binding capacity of streptococcal enolase
Amanda J Cork, Daniel J Ericsson, Ruby H P Law, et al.
Cellular Microbiology
|
June 20, 2008
The MACPF/CDC family of pore-forming toxins
Carlos J Rosado, Stephanie Kondos, Tara E Bull, et al.
Angewandte Chemie (International Ed. in English)
|
April 10, 2020
Application and Structural Analysis of Triazole-Bridged Disulfide Mimetics in Cyclic Peptides
Andrew M White, Simon J de Veer, Guojie Wu, et al.
Bioscience Reports
|
November 7, 2012
Structural characterization of the mechanism through which human glutamic acid decarboxylase auto-activates
Christopher G Langendorf, Kellie L Tuck, Trevor L G Key, et al.
Page
of 7
Search research articles
Search
Showing results (31-40 of 66) with videos related to
Sort By:
Page
of 7
Blood
|
January 31, 2022
A mechanism for hereditary angioedema caused by a lysine 311-to-glutamic acid substitution in plasminogen
S Kent Dickeson, Sunil Kumar, Mao-Fu Sun, et al.
Journal of Structural Biology
|
July 14, 2019
Solution structural model of the complex of the binding regions of human plasminogen with its M-protein receptor from Streptococcus pyogenes
Yue Yuan, Yetunde A Ayinuola, Damini Singh, et al.
Cell Death and Differentiation
|
February 9, 2018
Perforin proteostasis is regulated through its C2 domain: supra-physiological cell death mediated by T431D-perforin
Amelia J Brennan, Ruby H P Law, Paul J Conroy, et al.
Nature Communications
|
January 22, 2014
Maspin is not required for embryonic development or tumour suppression
Sonia S Y Teoh, Jessica Vieusseux, Monica Prakash, et al.
Blood Advances
|
January 27, 2022
Model for surface-dependent factor XII activation: the roles of factor XII heavy chain domains
Aleksandr Shamanaev, Ivan Ivanov, Mao-Fu Sun, et al.
Genome Biology
|
June 2, 2006
An overview of the serpin superfamily
Ruby H P Law, Qingwei Zhang, Sheena McGowan, et al.
Plos One
|
March 26, 2015
Stability of the octameric structure affects plasminogen-binding capacity of streptococcal enolase
Amanda J Cork, Daniel J Ericsson, Ruby H P Law, et al.
Cellular Microbiology
|
June 20, 2008
The MACPF/CDC family of pore-forming toxins
Carlos J Rosado, Stephanie Kondos, Tara E Bull, et al.
Angewandte Chemie (International Ed. in English)
|
April 10, 2020
Application and Structural Analysis of Triazole-Bridged Disulfide Mimetics in Cyclic Peptides
Andrew M White, Simon J de Veer, Guojie Wu, et al.
Bioscience Reports
|
November 7, 2012
Structural characterization of the mechanism through which human glutamic acid decarboxylase auto-activates
Christopher G Langendorf, Kellie L Tuck, Trevor L G Key, et al.
Page
of 7