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Showing 1 - 50 of 4,924 items for (author: lee & d)


EMDB Unreleased entry

EMDB-73108:
RQd20_wk56_28 Fab in complex with V703-0537_L14 SOSIP and 3BNC117 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB


EMDB Unreleased entry

EMDB-73109:
RVz20_wk72_08 Fab in complex with BG505 MD39 SOSIP and RM20A3 Fab
Method: single particle / : Sewall LM, Ozorowski G, Ward AB


EMDB Unreleased entry

EMDB-73110:
RRr20_wk72_07 Fab in complex with BG505 MD39 SOSIP and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB


EMDB Unreleased entry

EMDB-72520:
Eukaryotic translation initiation factor 2-B (eIF2B) bound to phosphorylated eIF2alpha (NTD)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A


EMDB Unreleased entry

EMDB-72521:
eIF2B lacking the latch helix bound to ISRACT-01 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A


EMDB Unreleased entry

EMDB-72522:
eIF2B lacking the latch helix bound to ISRACT-02 (Active state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A


EMDB Unreleased entry

EMDB-72523:
eIF2B lacking the latch helix bound to ISRACT-02 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5r:
Eukaryotic translation initiation factor 2-B (eIF2B) bound to phosphorylated eIF2alpha (NTD)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5s:
eIF2B lacking the latch helix bound to ISRACT-01 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5t:
eIF2B lacking the latch helix bound to ISRACT-02 (Active state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5u:
eIF2B lacking the latch helix bound to ISRACT-02 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-64749:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 in the Apo state
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-64751:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to EP54
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-64752:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to C5a
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-64761:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to C5a-pep
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-64777:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to R8Y
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-65890:
Structure of mC5aR2 in complex with mC5a-desArg
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-80132:
Structure of mC5aR2 in complex with mC5a-desArg (Monomer)
Method: single particle / : Tiwari D, Ganguly M, Banerjee R, Shukla AK, Mishra S, Dalal A, Nureki O

PDB-25if:
Structure of mC5aR2 in complex with mC5a-desArg (Monomer)
Method: single particle / : Tiwari D, Ganguly M, Banerjee R, Shukla AK

PDB-9v35:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 in the Apo state
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

PDB-9v38:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to EP54
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

PDB-9v3c:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to C5a
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

PDB-9v3y:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to C5a-pep
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

PDB-9v4d:
Structure of C5a anaphylatoxin chemotactic receptor 2, C5aR2 bound to R8Y
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

PDB-9wdi:
Structure of mC5aR2 in complex with mC5a-desArg
Method: single particle / : Tiwari D, Sano FK, Yadav MK, Sawada K, Ganguly M, Mishra S, Dalal A, Banerjee R, Nureki O, Shukla AK

EMDB-70949:
Distal Ku-Polymerase lambda BRCT
Method: single particle / : Vogt A, He Y

EMDB-70957:
XRCC4-XLF Scafoold
Method: single particle / : Vogt A, He Y

EMDB-70958:
NHEJ Short-range Pol lambda complex (consensus map)
Method: single particle / : Vogt A, He Y

EMDB-70959:
Proximal Ku-LigIV catalytic domain-Pol lambda BRCT
Method: single particle / : Vogt A, He Y

EMDB-70960:
NHEJ Short-range complex with Polymerase lambda
Method: single particle / : Vogt A, He Y

EMDB-75946:
In situ cryo-ET analysis of mitochondria and autophagosome contact in tauP301S Tg mouse cortical neurons
Method: electron tomography / : Gonzalez CU, Jaber N

EMDB-75947:
In situ cryo-ET analysis of mitochondria and autophagosome contact in tauP301S Tg mouse cortical neurons Supplementary 1
Method: electron tomography / : Gonzalez CU, Jaber N

EMDB-75949:
In situ cryo-ET analysis of mitochondria and autophagosome contact in tauP301S Tg mouse cortical neurons Supplementary 2
Method: electron tomography / : Gonzalez CU, Jaber N

EMDB-72052:
Consensus map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class3, E-site tRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-72055:
Multi-body LSU map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class3, E-site tRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-72069:
Multi-body SSU body map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class3, E-site tRNA)
Method: single particle / : Gutierrez-vargas C, Leger-Abraham M

EMDB-72070:
Multi-body SSU head map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class3, E-site tRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-72933:
Babesia divergens ribosome structure by single-particle cryo-EM (3D class3, E-site tRNA)
Method: single particle / : Gutierrez-Vargas C, Izhaki-Tavor LS, Leger-Abraham M

EMDB-73574:
Consensus map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class1, A-, P-, and E-site tRNAs and mRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-73576:
Multi-body LSU map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class1, A-, P-, and E-site tRNAs and mRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-73577:
Multi-body SSU body map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class1, A-, P-, and E-site tRNAs and mRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-73581:
Multi-body SSU head map for Babesia divergens ribosome structure by single-particle cryo-EM (3D class1, A-, P-, and E-site tRNAs and mRNA)
Method: single particle / : Gutierrez-Vargas C, Leger-Abraham M

EMDB-73602:
Babesia divergens ribosome structure by single-particle cryo-EM (3D class1, A-, P-, and E-site tRNAs and mRNA)
Method: single particle / : Gutierrez-Vargas C, Izhaki-Tavor LS, Leger-Abraham M

PDB-9ygm:
Babesia divergens ribosome structure by single-particle cryo-EM (3D class3, E-site tRNA)
Method: single particle / : Gutierrez-Vargas C, Izhaki-Tavor LS, Leger-Abraham M

PDB-9yxb:
Babesia divergens ribosome structure by single-particle cryo-EM (3D class1, A-, P-, and E-site tRNAs and mRNA)
Method: single particle / : Gutierrez-Vargas C, Izhaki-Tavor LS, Leger-Abraham M

EMDB-41497:
Structure of the H-lobe of human MED12
Method: single particle / : Chen SF, Chao TC, Kim HJ, Tang HC, Khadka S, Li T, Murakami K, Boyer TG, Tsai KL

EMDB-41500:
Structure of the kinase and central lobes of human CDK8 kinase module
Method: single particle / : Chen SF, Chao TC, Kim HJ, Tang HC, Khadka S, Li T, Murakami K, Boyer TG, Tsai KL

EMDB-72462:
Eukaryotic translation initiation factor 2-B in its apo form (active-state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72463:
Eukaryotic translation initiation factor 2-B in its apo form (inactive-state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72466:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

Related info.:EMDB header

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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