Major histocompatibility complex: Difference between revisions
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== Structural highlights == | == Structural highlights == | ||
Both Class I and Class II MHC molecules are heterodimers with two extracellular subunits (α and β) and one or two transmembrane helices that extend from the extracellular subunits to the cytoplasm. In Class I molecules, the α subunit is divided into three domains (α<sub>1<sub/> | Both Class I and Class II MHC molecules are heterodimers with two extracellular subunits (α and β) and one or two transmembrane helices that extend from the extracellular subunits to the cytoplasm. In Class I molecules, the α subunit is divided into three domains (α<sub>1</sub>, α<sub>2</sub>, and α<sub>3</sub>). The α<sub>1</sub> and α<sub>2</sub> domains form an eight strand β-sheet platform and two α-helix rails that combined serve as the peptide-binding groove. The α<sub>3</sub> domain forms an immunoglobulin-like fold that carries the peptide-binding groove with added support from with the β subunit (a β<sub>2</sub>-microglobulin molecule encoded outside of the MHC Class I gene locus). In Class II molecules, both the and subunits are divided into two domains (and). The peptide-binding groove is formed by the and domains and the and domains carry the peptide-binding groove. While the subunit is polymorphic for both MHC Classes, the subunit is polymorphic only for Class II molecules. | ||
<scene name='45/457390/Cv/5'>Human MHC class I antigen with β 2-microglobulin and peptide from Hepatitis virus</scene>. | <scene name='45/457390/Cv/5'>Human MHC class I antigen with β 2-microglobulin and peptide from Hepatitis virus</scene>. | ||
The <scene name='45/457390/Cv/6'>peptide derived from Hepatitis virus binds MHC in a peptide-recognition groove and makes various interactions with side chains and with water molecules</scene><ref>PMID:21538979</ref>. Water molecules shown as red spheres. | The <scene name='45/457390/Cv/6'>peptide derived from Hepatitis virus binds MHC in a peptide-recognition groove and makes various interactions with side chains and with water molecules</scene><ref>PMID:21538979</ref>. Water molecules shown as red spheres. | ||
Revision as of 21:09, 21 July 2020
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References
Proteopedia Page Contributors and Editors (what is this?)
Tihitina Y Aytenfisu, Michal Harel, Eric Martz, Alexander Berchansky, Sandra B. Gabelli, Joel L. Sussman