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Showing 1 - 50 of 2,802 items for (author: shan & w)

EMDB-44395:
Full-length cross-linked Contactin 2 (CNTN2)
Method: single particle / : Liu JL, Fan SF, Ren GR, Rudenko GR

EMDB-44396:
Cross-linked Contactin 2 Ig1-Ig6
Method: single particle / : Liu JL, Fan SF, Ren GR, Rudenko GR

EMDB-44397:
Full-length cross-linked Contactin 2 (FN1 apart)
Method: single particle / : Liu JL, Fan SF, Ren GR, Rudenko GR

PDB-9ba4:
Full-length cross-linked Contactin 2 (CNTN2)
Method: single particle / : Liu JL, Fan SF, Ren GR, Rudenko GR

PDB-9ba5:
Cross-linked Contactin 2 Ig1-Ig6
Method: single particle / : Liu JL, Fan SF, Ren GR, Rudenko GR

EMDB-43131:
Voltage gated potassium ion channel Kv1.2 in complex with DTx
Method: single particle / : Wu Y, Sigworth FJ

EMDB-43133:
Voltage gated potassium ion channel Kv1.2 in Sodium
Method: single particle / : Wu Y, Sigworth FJ

EMDB-43134:
Voltage gated potassium ion channel Kv1.2 in Potassium
Method: single particle / : Wu Y, Sigworth FJ

EMDB-43136:
Voltage gated potassium ion channel Kv1.2 W366F, C-type inactivated
Method: single particle / : Wu Y, Sigworth FJ

PDB-8vc3:
Voltage gated potassium ion channel Kv1.2 in complex with DTx
Method: single particle / : Wu Y, Sigworth FJ

PDB-8vc4:
Voltage gated potassium ion channel Kv1.2 in Sodium
Method: single particle / : Wu Y, Sigworth FJ

PDB-8vc6:
Voltage gated potassium ion channel Kv1.2 in Potassium
Method: single particle / : Wu Y, Sigworth FJ

PDB-8vch:
Voltage gated potassium ion channel Kv1.2 W366F, C-type inactivated
Method: single particle / : Wu Y, Sigworth FJ

EMDB-37210:
Prefusion RSV F Bound to Lonafarnib and D25 Fab
Method: single particle / : Yang Q, Xue B, Liu F, Peng W, Chen X

PDB-8kg5:
Prefusion RSV F Bound to Lonafarnib and D25 Fab
Method: single particle / : Yang Q, Xue B, Liu F, Peng W, Chen X

EMDB-37944:
Structure of 26RFa-pyroglutamylated RFamide peptide receptor complex
Method: single particle / : Jin S, Li X, Xu Y, Guo S, Wu C, Zhang H, Yuan Q, Xu HE, Xie X, Jiang Y

PDB-8wz2:
Structure of 26RFa-pyroglutamylated RFamide peptide receptor complex
Method: single particle / : Jin S, Li X, Xu Y, Guo S, Wu C, Zhang H, Yuan Q, Xu HE, Xie X, Jiang Y

EMDB-38216:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with antibody O5C2
Method: single particle / : Hsu HF, Wu MH, Chang YC, Hsu STD

PDB-8xbf:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with antibody O5C2
Method: single particle / : Hsu HF, Wu MH, Chang YC, Hsu STD

EMDB-41569:
Cryo-EM structure of HmAb64 scFv in complex with CNE40 SOSIP trimer
Method: single particle / : Chan KW, Kong XP

PDB-8tr3:
Cryo-EM structure of HmAb64 scFv in complex with CNE40 SOSIP trimer
Method: single particle / : Chan KW, Kong XP

EMDB-37823:
Cryo-EM structure of Melanin-Concentrating Hormone Receptor 1 with MCH
Method: single particle / : Zhao L, He Q, Yuan Q, Gu Y, Shan H, Hu W, Wu K, Xu HE, Zhang Y, Wu C, Shen J

EMDB-37824:
Cryo-EM structure of Melanin-Concentrating Hormone Receptor 2 with MCH
Method: single particle / : Zhao L, He Q, Yuan Q, Gu Y, Shan H, Hu W, Wu K, Xu HE, Zhang Y, Wu C, Shen J

PDB-8wss:
Cryo-EM structure of Melanin-Concentrating Hormone Receptor 1 with MCH
Method: single particle / : Zhao L, He Q, Yuan Q, Gu Y, Shan H, Hu W, Wu K, Xu HE, Zhang Y, Wu C

PDB-8wst:
Cryo-EM structure of Melanin-Concentrating Hormone Receptor 2 with MCH
Method: single particle / : Zhao L, He Q, Yuan Q, Gu Y, Shan H, Hu W, Wu K, Xu HE, Zhang Y, Wu C

EMDB-36815:
Recognition determinants of broad and potent HIV-1 neutralization by an affinity matured antibody from a pediatric elite-neutralizer
Method: single particle / : Kumar S, Singh S, Chatterjee A, Bajpai P, Sharma S, Katpara S, Lodha R, Dutta S, Luthra K

EMDB-40981:
BG505 Boost2 SOSIP.664 in complex with NHP polyclonal antibody FP3
Method: single particle / : Pratap PP, Antansijevic A, Ozorowski G, Ward AB

EMDB-40982:
BG505 Boost2 SOSIP.664 in complex with NHP polyclonal antibody N289
Method: single particle / : Pratap PP, Antansijevic A, Ozorowski G, Ward AB

PDB-8t2e:
BG505 Boost2 SOSIP.664 in complex with NHP polyclonal antibody FP3
Method: single particle / : Pratap PP, Antansijevic A, Ozorowski G, Ward AB

PDB-8t2f:
BG505 Boost2 SOSIP.664 in complex with NHP polyclonal antibody N289
Method: single particle / : Pratap PP, Antansijevic A, Ozorowski G, Ward AB

EMDB-35511:
Cryo-EM structure of human receptor with G proteins
Method: single particle / : Shen SY, Shao ZH, Yan W

EMDB-35512:
Cryo-EM structure of human receptor with G proteins
Method: single particle / : Shen SY, Shao ZH, Yan W

PDB-8ikg:
Cryo-EM structure of human receptor with G proteins
Method: single particle / : Shen SY, Shao ZH

PDB-8ikh:
Cryo-EM structure of human receptor with G proteins
Method: single particle / : Shen SY, Shao ZH

EMDB-44123:
Cryo-EM density of GluK2 amino-terminal domain (GluK2-ATD) from the open-state structure of kainate receptor GluK2 in complex with agonist glutamate and positive allosteric modulator BPAM344 bound to ConA
Method: single particle / : Nadezhdin KD, Gangwar SP, Sobolevsky AI

EMDB-44126:
Open state of kainate receptor GluK2 in complex with agonist glutamate and positive allosteric modulator BPAM344 bound to two concanavalin A dimers
Method: single particle / : Nadezhdin KD, Gangwar SP, Sobolevsky AI

EMDB-44127:
Open state of kainate receptor GluK2 in complex with agonist glutamate and positive allosteric modulator BPAM344 bound to one concanavalin A dimer
Method: single particle / : Nadezhdin KD, Gangwar SP, Sobolevsky AI

EMDB-40865:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme in the presence of Calcium and ADP-ribose
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40866:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme in the presence of Magnesium, Adenosine monophosphate, and Ribose-5-phosphate
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40867:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme in the presence of Magnesium, Adenosine monophosphate, and Ribose-5-phosphate
Method: single particle / : Huang Y, Sushant K, Lu W, Du J

EMDB-40868:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme in the presence of Magnesium and ADP-ribose, open state
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40869:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme in the presence of Magnesium and ADP-ribose, closed state
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40870:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme in the presence of Magnesium, ADP-ribose, Adenosine monophosphate, and Ribose-5-phosphate, closed state
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40871:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme (E1114A) in the presence of Magnesium and ADP-ribose, open state
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40872:
NUDT9-H domain focused cryo-EM map of TRPM2 chanzyme (E1114A) in the presence of Magnesium and ADP-ribose, closed state
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40875:
Raw consensus map of TRPM2 chanzyme in the presence of Magnesium, Adenosine monophosphate, and Ribose-5-phosphate
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40876:
Raw consensus map of TRPM2 chanzyme in the presence of Magnesium
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40877:
Raw consensus map of TRPM2 chanzyme in the presence of Calcium
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40878:
Raw consensus map of TRPM2 chanzyme in the presence of EDTA and ADP-ribose
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

EMDB-40879:
Raw consensus map of TRPM2 chanzyme in the presence of Magnesium and ADP-ribose, open state
Method: single particle / : Huang Y, Kumar S, Lu W, Du J

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New format data for meta-information of EMDB entries

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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