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Immunology and Cell Biology
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December 22, 2016
Insane in the membrane: a structural perspective of MLKL function in necroptosis
Emma J Petrie, Joanne M Hildebrand, James M Murphy
Trends in Biochemical Sciences
|
December 5, 2018
The Structural Basis of Necroptotic Cell Death Signaling
Emma J Petrie, Peter E Czabotar, James M Murphy
Italian Journal of Anatomy and Embryology = Archivio Italiano Di Anatomia Ed Embriologia
|
March 20, 2014
Recombinant RXFP1-LDL-A module does not form dimers
Emma J Petrie, Matthew A Periguini, Ross A D Bathgate, et al.
Frontiers in Endocrinology
|
October 7, 2015
In a Class of Their Own - RXFP1 and RXFP2 are Unique Members of the LGR Family
Emma J Petrie, Samantha Lagaida, Ashish Sethi, et al.
Biochemistry
|
July 2, 2014
Mapping key regions of the RXFP2 low-density lipoprotein class-A module that are involved in signal activation
Roy C K Kong, Ross A D Bathgate, Shoni Bruell, et al.
Chemistry (Weinheim an Der Bergstrasse, Germany)
|
November 28, 2015
Native Chemical Ligation to Minimize Aspartimide Formation during Chemical Synthesis of Small LDLa Protein
Julien Tailhades, Ashish Sethi, Emma J Petrie, et al.
The Journal of Biological Chemistry
|
October 30, 2014
Investigation of interactions at the extracellular loops of the relaxin family peptide receptor 1 (RXFP1)
Natalie A Diepenhorst, Emma J Petrie, Catherine Z Chen, et al.
Nature Communications
|
April 19, 2016
The complex binding mode of the peptide hormone H2 relaxin to its receptor RXFP1
Ashish Sethi, Shoni Bruell, Nitin Patil, et al.
The Journal of Biological Chemistry
|
August 9, 2013
The relaxin receptor (RXFP1) utilizes hydrophobic moieties on a signaling surface of its N-terminal low density lipoprotein class A module to mediate receptor activation
Roy C K Kong, Emma J Petrie, Biswaranjan Mohanty, et al.
Frontiers in Endocrinology
|
November 26, 2013
Chimeric RXFP1 and RXFP2 Receptors Highlight the Similar Mechanism of Activation Utilizing Their N-Terminal Low-Density Lipoprotein Class A Modules
Shoni Bruell, Roy C K Kong, Emma J Petrie, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 28) with videos related to
Sort By:
Page
of 3
Immunology and Cell Biology
|
December 22, 2016
Insane in the membrane: a structural perspective of MLKL function in necroptosis
Emma J Petrie, Joanne M Hildebrand, James M Murphy
Trends in Biochemical Sciences
|
December 5, 2018
The Structural Basis of Necroptotic Cell Death Signaling
Emma J Petrie, Peter E Czabotar, James M Murphy
Italian Journal of Anatomy and Embryology = Archivio Italiano Di Anatomia Ed Embriologia
|
March 20, 2014
Recombinant RXFP1-LDL-A module does not form dimers
Emma J Petrie, Matthew A Periguini, Ross A D Bathgate, et al.
Frontiers in Endocrinology
|
October 7, 2015
In a Class of Their Own - RXFP1 and RXFP2 are Unique Members of the LGR Family
Emma J Petrie, Samantha Lagaida, Ashish Sethi, et al.
Biochemistry
|
July 2, 2014
Mapping key regions of the RXFP2 low-density lipoprotein class-A module that are involved in signal activation
Roy C K Kong, Ross A D Bathgate, Shoni Bruell, et al.
Chemistry (Weinheim an Der Bergstrasse, Germany)
|
November 28, 2015
Native Chemical Ligation to Minimize Aspartimide Formation during Chemical Synthesis of Small LDLa Protein
Julien Tailhades, Ashish Sethi, Emma J Petrie, et al.
The Journal of Biological Chemistry
|
October 30, 2014
Investigation of interactions at the extracellular loops of the relaxin family peptide receptor 1 (RXFP1)
Natalie A Diepenhorst, Emma J Petrie, Catherine Z Chen, et al.
Nature Communications
|
April 19, 2016
The complex binding mode of the peptide hormone H2 relaxin to its receptor RXFP1
Ashish Sethi, Shoni Bruell, Nitin Patil, et al.
The Journal of Biological Chemistry
|
August 9, 2013
The relaxin receptor (RXFP1) utilizes hydrophobic moieties on a signaling surface of its N-terminal low density lipoprotein class A module to mediate receptor activation
Roy C K Kong, Emma J Petrie, Biswaranjan Mohanty, et al.
Frontiers in Endocrinology
|
November 26, 2013
Chimeric RXFP1 and RXFP2 Receptors Highlight the Similar Mechanism of Activation Utilizing Their N-Terminal Low-Density Lipoprotein Class A Modules
Shoni Bruell, Roy C K Kong, Emma J Petrie, et al.
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of 3