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Showing 1 - 50 of 17,632 items for (author: yan & z)

EMDB-67778: 
A Wnt3a/Fzd8-CRD/LRP6-E3E4 complex with FKBP
Method: single particle / : Yue D, Sun G, Zhang L, Wang Z, Xu W

EMDB-67779: 
A Wnt3a/Fzd8-CRD/LRP6-E3E4-LA complex with FKBP
Method: single particle / : Yue D, Sun G, Zhang L, Wang Z, Xu W

EMDB-67780: 
Wnt3a signalosome extracellular complex
Method: single particle / : Yue D, Sun G, Zhang L, Wang Z, Xu W

PDB-21kr: 
A Wnt3a/Fzd8-CRD/LRP6-E3E4 complex with FKBP
Method: single particle / : Yue D, Sun G, Zhang L, Wang Z, Xu W

PDB-21ks: 
A Wnt3a/Fzd8-CRD/LRP6-E3E4-LA complex with FKBP
Method: single particle / : Yue D, Sun G, Zhang L, Wang Z, Xu W

PDB-21kt: 
Wnt3a signalosome extracellular complex
Method: single particle / : Yue D, Sun G, Zhang L, Wang Z, Xu W

EMDB-66046: 
ALECT2 type Ia filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

EMDB-66047: 
ALECT2 type Ib filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

EMDB-66048: 
ALECT2 type IIa filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

EMDB-66049: 
ALECT2 type IIb filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

EMDB-66050: 
ALECT2 type III filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

PDB-9wl5: 
ALECT2 type Ia filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

PDB-9wl6: 
ALECT2 type Ib filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

PDB-9wl7: 
ALECT2 type IIa filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

PDB-9wl8: 
ALECT2 type IIb filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

PDB-9wl9: 
ALECT2 type III filament from renal biopsy tissue of an individual with ALECT2 amyloidosis
Method: helical / : Zheng J, Zheng Y, Shi Y

EMDB-70787: 
Designed one-component T=3 quasisymmetric protein nanocage
Method: single particle / : Lee S, Chmielewski D, Wang S, Kibler R, Park YJ, Veesler D, Baker D

EMDB-70792: 
Designed one-component T=3 quasisymmetric protein nanocage pentamer sub-particle region
Method: single particle / : Lee S, Chmielewski D, Wang S, Kibler R, Park YJ, Veesler D, Baker D

EMDB-70797: 
Designed one-component T=13 quasisymmetric protein nanocage pentamer sub-particle region
Method: subtomogram averaging / : Lee S, Chmielewski D, Wang S, Kibler R, Park YJ, Veesler D, Baker D

EMDB-70798: 
Designed one-component T=13 quasisymmetric protein nanocage hexamer sub-particle region
Method: subtomogram averaging / : Lee S, Chmielewski D, Wang S, Kibler R, Park YJ, Veesler D, Baker D

EMDB-64904: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Go complex in nucleotide-free C state
Method: single particle / : Matsui TE, Kobayashi K, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64905: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Go complex in nucleotide-free NC state 1
Method: single particle / : Matsui TE, Kobayashi K, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64906: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Go complex in nucleotide-free NC state 2
Method: single particle / : Matsui TE, Kobayashi K, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64907: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gq (delipidated) complex in nucleotide-free C state
Method: single particle / : Matsui TE, Kobayashi K, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64908: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 complex in nucleotide-free C state 1
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64909: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 complex in nucleotide-free C state 2
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64910: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 complex in nucleotide-free NC state 1
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64911: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 complex in nucleotide-free NC state 2
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64912: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 complex in nucleotide-free NC state 3
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64913: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GDP-bound, AHD-closed C state 1, plunge-frozen 8 seconds after GDP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64914: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GDP-bound, AHD-closed C state 2, plunge-frozen 8 seconds after GDP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64915: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GDP-bound, AHD-closed C state 1, plunge-frozen 15 seconds after GDP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64916: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GDP-bound, AHD-closed C state 2, plunge-frozen 15 seconds after GDP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64917: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open C state, plunge-frozen 8 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64918: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-closed C state 1, plunge-frozen 8 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-64919: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-closed C state 2, plunge-frozen 8 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67426: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 (delipidated) complex in nucleotide-free C state
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67427: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 (delipidated) complex in nucleotide-free NC state
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67429: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open C state 1, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67430: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open C state 2, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67431: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open NC state 1, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67432: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open NC state 2, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67433: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open NC state 3, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

EMDB-67434: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open NC state 4, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

PDB-20zc: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 (delipidated) complex in nucleotide-free C state
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

PDB-20zd: 
Cryo-EM structure of human Neurotensin Receptor 1 (hNTSR1)-Gi1 (delipidated) complex in nucleotide-free NC state
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

PDB-20zg: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open C state 1, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

PDB-20zh: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open C state 2, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

PDB-20zi: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open NC state 1, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE

PDB-20zj: 
Cryo-EM structure of the human neurotensin receptor 1 (hNTSR1)-Gi1 complex in the GTP-bound, AHD-open NC state 2, plunge-frozen 0-5 seconds after GTP addition
Method: single particle / : Kobayashi K, Matsui TE, Fukuda M, Kawakami K, Yamashita K, Kato HE
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