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==Pembrolizumab==
==Pembrolizumab==
<StructureSection load='5dk3' size='350' side='right' caption='Full-Length Crystal Structure of Pembrolizumab' scene=''>
<StructureSection load='5dk3' size='350' side='right' caption='Full-Length Crystal Structure of Pembrolizumab (PDB code: 5DK3' scene=''>
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You may include any references to papers as in: the use of JSmol in Proteopedia <ref>DOI 10.1002/ijch.201300024</ref> or to the article describing Jmol <ref>PMID:21638687</ref> to the rescue.
You may include any references to papers as in: the use of JSmol in Proteopedia <ref>DOI 10.1002/ijch.201300024</ref> or to the article describing Jmol <ref>PMID:21638687</ref> to the rescue.
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The complex formed when protein-derived ligand, PD-L1, interacts with the inhibitory receptor, PD-1, suppresses immune responses again autoantigens and helps in peripheral immune tolerance. However, when tumors overexpress PD-L1, the interaction with PD-1 inhibits T-lymphocyte proliferation, release of cytokines, and cytotoxicity, exhausting tumor-specific T-cells. There are a total of 12 PD-1ECD residues that are involved in forming the complex with the N-terminal half of PD-L1ECD (PD-L1ECD-N). Nine hydrogen bonds, 3 water-mediated hydrogen bonds, 2 salt bridges, and numerous hydrophobic interactions make up the PD-1ECD/PD-L1ECD-N interaction.The CC’FG sheet within both proteins is the main interaction point. A hydrophobic surface patch is formed when the PD-1ECD is in complex with PD-L1ECD-N. The PD-1ECD residues involved include Val64, Tyr68, Ile126, Leu128, Ala132 and Ile134. Numerous hydrophilic amino acids that encircle PD-L1ECD-N form salt bridges and hydrogen bonds with Asn66, Tyr68, Gln75, Thr76, Asp77, Lys78, Ala132 and Glu136 of PD-1ECD <ref name="horita" />.  
The complex formed when protein-derived ligand, PD-L1, interacts with the inhibitory receptor, PD-1, suppresses immune responses again autoantigens and helps in peripheral immune tolerance. However, when tumors overexpress PD-L1, the interaction with PD-1 inhibits T-lymphocyte proliferation, release of cytokines, and cytotoxicity, exhausting tumor-specific T-cells. There are a total of 12 PD-1ECD residues that are involved in forming the complex with the N-terminal half of PD-L1ECD (PD-L1ECD-N). Nine hydrogen bonds, 3 water-mediated hydrogen bonds, 2 salt bridges, and numerous hydrophobic interactions make up the PD-1ECD/PD-L1ECD-N interaction.The CC’FG sheet within both proteins is the main interaction point. A hydrophobic surface patch is formed when the PD-1ECD is in complex with PD-L1ECD-N. The PD-1ECD residues involved include Val64, Tyr68, Ile126, Leu128, Ala132 and Ile134. Numerous hydrophilic amino acids that encircle PD-L1ECD-N form salt bridges and hydrogen bonds with Asn66, Tyr68, Gln75, Thr76, Asp77, Lys78, Ala132 and Glu136 of PD-1ECD <ref name="horita" />.  


== Mechanism ==
== Disease in Humans - Melanoma ==


T-cells are a major component of the immune response in the human body. They have the ability to recognize cancer-related antigens as nonself and eliminate those cells <ref>doi  10.2147/DDDT.S78036</ref>. PD-L1 and PD-L2 are ligands expressed by some tumors and inhibit t-cell function when bound to PD-1, which is located on the surface of antigen-specific t-cells <ref>doi 10.1007/s40265-016-0543-x</ref>. When PD-L1 is ligated to PD-1 an adaptive immune response occurs, and this allows cancer cells to bypass the immune surveillance and grow uncontrollably. Pembrolizumab is an FDA-approved treatment that works as a PD-1 pathway inhibitor to fight metastatic melanoma, a form of cancer. As an inhibitor, Pembrolizumab targets the cell death of PD-1 and blocks the immune checkpoint pathway. Pembrolizumab has a very high affinity to PD-1, allowing it to block the interaction between PD-1 with PD-L1 and PD-L2 very efficiently. It antagonizes the interaction between PD-1 and its known ligands, and re-activates anti-tumor immunity <ref name="log" />. The PD-1/PD-L1 interaction inhibits t-lymphocyte proliferation, releases cytokines and cytotoxicity, and exhausts tumor-specific t-cells. The inhibition of this pathway reverses the exhausted t-cell phenotype and normalizes the anti-tumor response. One downside of Pembrolizumab is that it may cause inflammatory side effects <ref name="horita" />.
T-cells are a major component of the immune response in the human body. They have the ability to recognize cancer-related antigens as nonself and eliminate those cells <ref>doi  10.2147/DDDT.S78036</ref>. PD-L1 and PD-L2 are ligands expressed by some tumors and inhibit t-cell function when bound to PD-1, which is located on the surface of antigen-specific t-cells <ref>doi 10.1007/s40265-016-0543-x</ref>. When PD-L1 is ligated to PD-1 an adaptive immune response occurs, and this allows cancer cells to bypass the immune surveillance and grow uncontrollably. Pembrolizumab is an FDA-approved treatment that works as a PD-1 pathway inhibitor to fight metastatic melanoma, a form of cancer. As an inhibitor, Pembrolizumab targets the cell death of PD-1 and blocks the immune checkpoint pathway. Pembrolizumab has a very high affinity to PD-1, allowing it to block the interaction between PD-1 with PD-L1 and PD-L2 very efficiently. It antagonizes the interaction between PD-1 and its known ligands, and re-activates anti-tumor immunity <ref name="log" />. The PD-1/PD-L1 interaction inhibits t-lymphocyte proliferation, releases cytokines and cytotoxicity, and exhausts tumor-specific t-cells. The inhibition of this pathway reverses the exhausted t-cell phenotype and normalizes the anti-tumor response. One downside of Pembrolizumab is that it may cause inflammatory side effects <ref name="horita" />.

Revision as of 23:24, 16 November 2016

Pembrolizumab

Full-Length Crystal Structure of Pembrolizumab (PDB code: 5DK3

Drag the structure with the mouse to rotate

References