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Showing 1 - 50 of 10,829 items for (author: ye & g)

EMDB-80331:
Structure of MurA in complex with ligand-bound LpxC
Method: single particle / : Yeo JY, Yan XF, Gao YG

EMDB-80332:
Peptidoglycan and lipopolysaccharide biosynthesis enzymes with inhibitor
Method: single particle / : Yeo JY, Yan XF, Gao YG

PDB-25rv:
Structure of MurA in complex with ligand-bound LpxC
Method: single particle / : Yeo JY, Yan XF, Gao YG

PDB-25rw:
Peptidoglycan and lipopolysaccharide biosynthesis enzymes with inhibitor
Method: single particle / : Yeo JY, Yan XF, Gao YG

EMDB-77061:
95-bp double-stranded DNA minicircle: poly(A:T) model
Method: single particle / : Liu Y, Qin PZ

PDB-13gq:
95-bp double-stranded DNA minicircle: poly(A:T) model
Method: single particle / : Liu Y, Qin PZ

EMDB-67611:
Structural and Functional Insights into VEGFR-3-Mediated Lymphangiogenesis : Unraveling the clustering mechanism of VEGFR-3/VEGF-C
Method: single particle / : Cho RE, Ahn JS, Kim HM

EMDB-67618:
Structural and Functional Insights into VEGFR-3-Mediated Lymphangiogenesis : Unraveling the clustering mechanism of VEGFR-3/VEGF-C
Method: single particle / : Cho RE, Ahn JS, Kim HM

PDB-21ei:
Structural and Functional Insights into VEGFR-3-Mediated Lymphangiogenesis : Unraveling the clustering mechanism of VEGFR-3/VEGF-C
Method: single particle / : Cho RE, Ahn JS, Kim HM

PDB-21es:
Structural and Functional Insights into VEGFR-3-Mediated Lymphangiogenesis : Unraveling the clustering mechanism of VEGFR-3/VEGF-C
Method: single particle / : Cho RE, Ahn JS, Kim HM

PDB-32fd:
Cryo-EM structure of cariprazine-bound D3 dopamine receptor with mini-Go (alternative conformation)
Method: single particle / : Yardeni EH, Kiss DJ, Keseru GM, Shalev-Benami M

EMDB-57241:
Composite cryo-EM map of the human DNAAF19-RUVBL1/2-DPCD complex
Method: single particle / : Wood E, Ochi T

EMDB-59308:
T33-Fus-1A cage - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, Le Coq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

EMDB-59315:
T33-Fus-2 cage - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, Le Coq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

EMDB-59316:
T33-Fus-1A asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, LeCoq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

EMDB-59317:
T33-Fus-1B asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, LeCoq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

EMDB-59318:
T33-Fus-2 asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, LeCoq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

PDB-33as:
T33-Fus-1A cage - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, Le Coq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

PDB-33at:
T33-Fus-2 cage - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, Le Coq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

PDB-33au:
T33-Fus-1A asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, LeCoq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

PDB-33av:
T33-Fus-1B asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, LeCoq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

PDB-33aw:
T33-Fus-2 asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Method: single particle / : San Segundo-Acosta P, LeCoq J, Boskovic J, Aglietti RA, Bowers P, Yeates TO, Castells-Graells R

EMDB-55063:
BepA-BamABCDE-OMP-Nb5 complex in open, substrate-engaged beta barrel conformation.
Method: single particle / : Nguyen VS, Remaut H, Nguyen PC, Voedts H, Collet JF

EMDB-55064:
BepA-BamABCDE-Nb32 complex in inward open conformation with lateral seam closed
Method: single particle / : Nguyen VS, Remaut H, Nguyen PC, Voedts H, Collet JF

PDB-9sow:
BepA-BamABCDE-OMP-Nb5 complex in open, substrate-engaged beta barrel conformation.
Method: single particle / : Nguyen VS, Remaut H, Nguyen PC, Voedts H, Collet JF

PDB-9sox:
BepA-BamABCDE-Nb32 complex in inward open conformation with lateral seam closed
Method: single particle / : Nguyen VS, Remaut H, Nguyen PC, Voedts H, Collet JF

EMDB-78289:
NPC1-NPC2 complex with bis-sterol molecule JM046, pH 5.5
Method: single particle / : Wu X, Yan N

EMDB-78290:
NPC1 expressed from Sf9 and purified at pH 5.5
Method: single particle / : Wu X, Yan N

EMDB-55686:
Murine RNF213 bound to maltoheptaose
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55687:
Murine RNF213 bound to maltoheptaose (Consensus refinement)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55688:
Murine RNF213 bound to maltoheptaose (Focused refinement of ATPase domain)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55689:
Murine RNF213 bound to maltoheptaose (Focused refinement of stalk)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55690:
Murine RNF213 bound to maltoheptaose (Focused refinement of top of stalk)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55691:
Murine RNF213 bound to maltoheptaose (Focused refinement of CBM20 domain)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55692:
Murine RNF213 bound to maltoheptaose (Focused refinement of E3 module)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55693:
Murine RNF213 bound to maltoheptaose (Focused refinement of E3 shell)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55694:
Murine RNF213
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55695:
Murine RNF213 (Consensus refinement)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55696:
Murine RNF213 (Focused refinement of ATPase domain)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55697:
Murine RNF213 (Focused refinement of stalk)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55698:
Murine RNF213 (Focused refinement of top of stalk)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55699:
Murine RNF213 (Focused refinement of CBM20 domain)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55700:
Murine RNF213 (Focused refinement of E3 module)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-55701:
Murine RNF213 (Focused refinement of E3 shell)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-59437:
Murine RNF213 (Y434A) (Focused refinement of ATPase domain)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-59438:
Murine RNF213 (Y434A) (focused refinement of stalk)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-59439:
murine RNF213 (Y434A) (focused refinement of top of stalk)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-59440:
murine RNF213 (Y434A) (focused refinement of CBM20 domain)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-59441:
murine RNF213 (Y434A) (focused refinement of E3)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

EMDB-59442:
murine RNF213 (Y434A) (focused refinement of E3 shell)
Method: single particle / : Yip MCJ, Naydenova K, Randow F

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