Rebecca Martin/Sandbox1: Difference between revisions

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== '''IgA''' ==


{{STRUCTURE_3cm9 |  PDB=3cm9  |  SCENE=  }}
{{STRUCTURE_3cm9 |  PDB=3cm9  |  SCENE=  }}
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=== Introduction ===
== Introduction ==


=== Dimeric and Secretory IgA ===
== Dimeric and Secretory IgA ==


=== Secretory Component and Polyimmunoglobulin receptor ===
== Secretory Component and Polyimmunoglobulin receptor ==


=== Insights into Function ===
== Insights into Function ==


=== Evolution ===
== Evolution ==


=== Implications in Science and Medicine ===
== Implications in Science and Medicine ==


=== Limitations of the Current Studies ===
== Limitations of the Current Studies ==


=== Questions for the Future ===
== Questions for the Future ==


<applet load='2ocw' size='150' frame='true' align='left' caption='This is the secretory component.' />  
<applet load='2ocw' size='150' frame='true' align='left' caption='This is the secretory component.' />  
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=== Links ===
IgA
Model of human IgA2 determined by solution scattering, curve fitting and homology modelling [[1r70]]


Crystal structure of human FcaRI bound to IgA1-Fc [[1ow0]]


Solution structure of human dimeric immunoglobulin A [[2qtj]]


Solution structure of human secretory IgA1 [[3chn]]


Solution Structure of Human SIgA2 [[3cm9]]


Solution structure of human secretory component [[2ocw]]




Receptors


Crystal Structure of a Ligand-Binding Domain of the Human Polymeric Ig Receptor, pIgR [[1XED]]


Crystal structure of human FcaRI [[10vz]]


Crystal structure of a Staphylococcus aureus protein (SSL7) in complex with Fc of human IgA1 [[2qej]]




For Comparison


IgM: Solution structure of human Immunoglobulin M [[2rcj]]
== Links ==
IgG:
=== IgA ===
IgD:
* Model of human IgA2 determined by solution scattering, curve fitting and homology modelling [[1r70]]
IgE:
* Crystal structure of human FcaRI bound to IgA1-Fc [[1ow0]]
* Solution structure of human dimeric immunoglobulin A [[2qtj]]
* Solution structure of human secretory IgA1 [[3chn]]
* Solution Structure of Human SIgA2 [[3cm9]]
* Solution structure of human secretory component [[2ocw]]


=== Receptors ===
* Crystal Structure of a Ligand-Binding Domain of the Human Polymeric Ig Receptor, pIgR [[1XED]]
* Crystal structure of human FcaRI [[10vz]]
* Crystal structure of a Staphylococcus aureus protein (SSL7) in complex with Fc of human IgA1 [[2qej]]


=== For Comparison ===
* IgM: Solution structure of human Immunoglobulin M [[2rcj]]
* IgG:
* IgD:
* IgE:


=== References ===




Replace the PDB id (use lowercase!) after the STRUCTURE_ and after PDB= to load
== References ==
and display another structure.

Revision as of 16:20, 22 April 2009

Template:STRUCTURE 3cm9


IntroductionIntroduction

Dimeric and Secretory IgADimeric and Secretory IgA

Secretory Component and Polyimmunoglobulin receptorSecretory Component and Polyimmunoglobulin receptor

Insights into FunctionInsights into Function

EvolutionEvolution

Implications in Science and MedicineImplications in Science and Medicine

Limitations of the Current StudiesLimitations of the Current Studies

Questions for the FutureQuestions for the Future

This is the secretory component.

Drag the structure with the mouse to rotate









LinksLinks

IgAIgA

  • Model of human IgA2 determined by solution scattering, curve fitting and homology modelling 1r70
  • Crystal structure of human FcaRI bound to IgA1-Fc 1ow0
  • Solution structure of human dimeric immunoglobulin A 2qtj
  • Solution structure of human secretory IgA1 3chn
  • Solution Structure of Human SIgA2 3cm9
  • Solution structure of human secretory component 2ocw

ReceptorsReceptors

  • Crystal Structure of a Ligand-Binding Domain of the Human Polymeric Ig Receptor, pIgR 1XED
  • Crystal structure of human FcaRI 10vz
  • Crystal structure of a Staphylococcus aureus protein (SSL7) in complex with Fc of human IgA1 2qej

For ComparisonFor Comparison

  • IgM: Solution structure of human Immunoglobulin M 2rcj
  • IgG:
  • IgD:
  • IgE:


ReferencesReferences

Proteopedia Page Contributors and Editors (what is this?)Proteopedia Page Contributors and Editors (what is this?)

Rebecca Martin, Jaime Prilusky