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Structural basis for membrane attack complex inhibition by CD59
by
Bickel, Jasmine K.
, Stansfeld, Phillip J.
, Couves, Emma C.
, Gardner, Scott
, Tate, Edward W.
, Voisin, Tomas B.
, Bubeck, Doryen
in
101/28
/ 119/118
/ 14
/ 14/63
/ 631/250
/ 631/45/535/1258/1259
/ 631/45/612/113
/ 631/535/2501
/ CD59 antigen
/ CD59 Antigens - metabolism
/ Cellular structure
/ Complement
/ Complement Activation
/ Complement C8 - metabolism
/ Complement C9 - metabolism
/ Complement component C9
/ Complement Membrane Attack Complex - metabolism
/ Cryoelectron Microscopy
/ Damage
/ Deflection
/ Electron microscopy
/ Host-pathogen interactions
/ Humanities and Social Sciences
/ Humans
/ Insertion
/ Membrane attack complex
/ Membranes
/ Molecular dynamics
/ Monomers
/ multidisciplinary
/ Polymerization
/ Pore formation
/ Proteins
/ Receptors
/ Science
/ Science (multidisciplinary)
/ Virulence factors
2023
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Structural basis for membrane attack complex inhibition by CD59
by
Bickel, Jasmine K.
, Stansfeld, Phillip J.
, Couves, Emma C.
, Gardner, Scott
, Tate, Edward W.
, Voisin, Tomas B.
, Bubeck, Doryen
in
101/28
/ 119/118
/ 14
/ 14/63
/ 631/250
/ 631/45/535/1258/1259
/ 631/45/612/113
/ 631/535/2501
/ CD59 antigen
/ CD59 Antigens - metabolism
/ Cellular structure
/ Complement
/ Complement Activation
/ Complement C8 - metabolism
/ Complement C9 - metabolism
/ Complement component C9
/ Complement Membrane Attack Complex - metabolism
/ Cryoelectron Microscopy
/ Damage
/ Deflection
/ Electron microscopy
/ Host-pathogen interactions
/ Humanities and Social Sciences
/ Humans
/ Insertion
/ Membrane attack complex
/ Membranes
/ Molecular dynamics
/ Monomers
/ multidisciplinary
/ Polymerization
/ Pore formation
/ Proteins
/ Receptors
/ Science
/ Science (multidisciplinary)
/ Virulence factors
2023
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Structural basis for membrane attack complex inhibition by CD59
by
Bickel, Jasmine K.
, Stansfeld, Phillip J.
, Couves, Emma C.
, Gardner, Scott
, Tate, Edward W.
, Voisin, Tomas B.
, Bubeck, Doryen
in
101/28
/ 119/118
/ 14
/ 14/63
/ 631/250
/ 631/45/535/1258/1259
/ 631/45/612/113
/ 631/535/2501
/ CD59 antigen
/ CD59 Antigens - metabolism
/ Cellular structure
/ Complement
/ Complement Activation
/ Complement C8 - metabolism
/ Complement C9 - metabolism
/ Complement component C9
/ Complement Membrane Attack Complex - metabolism
/ Cryoelectron Microscopy
/ Damage
/ Deflection
/ Electron microscopy
/ Host-pathogen interactions
/ Humanities and Social Sciences
/ Humans
/ Insertion
/ Membrane attack complex
/ Membranes
/ Molecular dynamics
/ Monomers
/ multidisciplinary
/ Polymerization
/ Pore formation
/ Proteins
/ Receptors
/ Science
/ Science (multidisciplinary)
/ Virulence factors
2023
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Structural basis for membrane attack complex inhibition by CD59
Journal Article
Structural basis for membrane attack complex inhibition by CD59
2023
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Overview
CD59 is an abundant immuno-regulatory receptor that protects human cells from damage during complement activation. Here we show how the receptor binds complement proteins C8 and C9 at the membrane to prevent insertion and polymerization of membrane attack complex (MAC) pores. We present cryo-electron microscopy structures of two inhibited MAC precursors known as C5b8 and C5b9. We discover that in both complexes, CD59 binds the pore-forming β-hairpins of C8 to form an intermolecular β-sheet that prevents membrane perforation. While bound to C8, CD59 deflects the cascading C9 β-hairpins, rerouting their trajectory into the membrane. Preventing insertion of C9 restricts structural transitions of subsequent monomers and indirectly halts MAC polymerization. We combine our structural data with cellular assays and molecular dynamics simulations to explain how the membrane environment impacts the dual roles of CD59 in controlling pore formation of MAC, and as a target of bacterial virulence factors which hijack CD59 to lyse human cells.
CD59 protects human cells from damage by the MAC immune pore. The authors show how CD59 inhibits MAC, by deflecting pore-forming β-hairpins of complement proteins. As well as how the membrane environment influences the role of CD59 in complement regulation and in host-pathogen interactions.
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