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Showing 1 - 50 of 62 items for (author: tyson & as)

EMDB-71976: 
Inactive-state naloxone-mu opioid receptor nanobody6 complex - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71977: 
Inactive-state naloxone-mu opioid receptor nanobody6 complex - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71978: 
Inactive-state naloxone-mu opioid receptor nanobody6 complex - Locally refined fiducal map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71979: 
Nucleotide-free naloxone-mu opioid receptor Gi1 complex - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71980: 
Nucleotide-free naloxone-mu opioid receptor Gi1 complex - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71981: 
Nucleotide-free naloxone-mu opioid receptor Gi1 complex - Locally refined Gi map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71982: 
Latent-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71983: 
Latent-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71984: 
Latent-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined Gi map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71985: 
Unlatched-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71986: 
Unlatched-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71987: 
Unlatched-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined Gi map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71988: 
Primed-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71989: 
Primed-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71990: 
Primed-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined Gi map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71991: 
Engaged-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71992: 
Engaged-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71993: 
Engaged-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined Gi map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71998: 
Primed-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-71999: 
Primed-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72000: 
Primed-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound) - Locally refined Gi GDP map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72001: 
Inactive-state naloxone-mu opioid receptor nanobody6 complex
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72002: 
Nucleotide-free naloxone-mu opioid receptor Gi1 complex
Method: single particle / : Gati C, Han GW, Khan S

EMDB-72003: 
Latent-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

EMDB-72004: 
Unlatched-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

EMDB-72005: 
Primed-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

EMDB-72006: 
Engaged-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

EMDB-72008: 
Primed-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

EMDB-72022: 
Latent-state loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72023: 
Latent-state loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Locally refined map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72024: 
Engaged-state loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72025: 
Engaged-state loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Locally refined map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72026: 
Open-AHD loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72027: 
Open-AHD loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Locally refined receptor map
Method: single particle / : Gati C, Khan S, Han GW

PDB-9pxu: 
Inactive-state naloxone-mu opioid receptor nanobody6 complex
Method: single particle / : Gati C, Khan S, Han GW

PDB-9pxv: 
Nucleotide-free naloxone-mu opioid receptor Gi1 complex
Method: single particle / : Gati C, Han GW, Khan S

PDB-9pxw: 
Latent-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

PDB-9pxx: 
Unlatched-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

PDB-9pxy: 
Primed-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

PDB-9py2: 
Engaged-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

PDB-9py4: 
Primed-state loperamide-mu opioid receptor-Gi GDPbS complex (rebound)
Method: single particle / : Gati C, Han GW, Khan S

EMDB-46610: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist norBNI, Consensus map
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-46611: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist GB18, Consensus map
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-46583: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist JDTic no scFv16, Original map receptor
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-46584: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist JDTic, no scFv16, Original map G protein
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-46608: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist JDTic, no scFv16, Consensus map
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-46609: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist JDTic, Consensus map
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-43651: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist norBNI, Original map receptor
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-43648: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist JDTic, Original map receptor
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S

EMDB-43649: 
Kappa opioid receptor:Galphai protein in complex with inverse agonist JDTic, Original map G protein
Method: single particle / : Gati C, Motiwala Z, Tyson AS, Styrpejko D, Han GW, Khan S, Ramos-Gonzalez N, Shenvi R, Majumdar S
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