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Displaying Records: ( 1-10 / 80 ) [ 10 Records ]

3J6E

Energy minimized average structure of microtubules stabilized by gmpcpp
Deposition Author(s): Alushin, G.M. , Baker, D. , Kellogg, E.H. , Lander, G.C. , Nogales, E. , Zhang, R.

Date: 2014-02-18
Method: ELECTRON MICROSCOPY
Resolution: 4.7 Å
Organism(s): Sus Scrofa
Sequences Data: 3J6E_A , 3J6E_C , 3J6E_E , 3J6E_G , 3J6E_I , 3J6E_K , 3J6E_M , 3J6E_O , 3J6E_Q , 3J6E_B , 3J6E_D , 3J6E_F , 3J6E_H , 3J6E_J , 3J6E_L , 3J6E_N , 3J6E_P , 3J6E_R

3J6F

Minimized average structure of gdp-bound dynamic microtubules
Deposition Author(s): Alushin, G.M. , Baker, D. , Kellogg, E.H. , Lander, G.C. , Nogales, E. , Zhang, R.

Date: 2014-02-19
Method: ELECTRON MICROSCOPY
Resolution: 4.9 Å
Organism(s): Sus Scrofa
Sequences Data: 3J6F_A , 3J6F_C , 3J6F_E , 3J6F_G , 3J6F_I , 3J6F_K , 3J6F_M , 3J6F_O , 3J6F_Q , 3J6F_B , 3J6F_D , 3J6F_F , 3J6F_H , 3J6F_J , 3J6F_L , 3J6F_N , 3J6F_P , 3J6F_R

3J6G

Minimized average structure of microtubules stabilized by taxol
Deposition Author(s): Alushin, G.M. , Baker, D. , Kellogg, E.H. , Lander, G.C. , Nogales, E. , Zhang, R.

Date: 2014-02-19
Method: ELECTRON MICROSCOPY
Resolution: 5.5 Å
Organism(s): Sus Scrofa
Sequences Data: 3J6G_A , 3J6G_C , 3J6G_E , 3J6G_G , 3J6G_I , 3J6G_K , 3J6G_M , 3J6G_O , 3J6G_Q , 3J6G_B , 3J6G_D , 3J6G_F , 3J6G_H , 3J6G_J , 3J6G_L , 3J6G_N , 3J6G_P , 3J6G_R

3JCK

Structure of the yeast 26s proteasome lid sub-complex
Deposition Author(s): Dambacher, C.M. , Herzik Jr., M.A. , Lander, G.C. , Martin, A. , Worden, E.J.

Date: 2015-12-20
Method: ELECTRON MICROSCOPY
Resolution: 3.5 Å
Organism(s): Saccharomyces Cerevisiae S288C
Sequences Data: 3JCK_A , 3JCK_B , 3JCK_C , 3JCK_D , 3JCK_E , 3JCK_F , 3JCK_G , 3JCK_H , 3JCK_I

4YLR

Tubulin glutamylase
Deposition Author(s): Garnham, C.P. , Lander, G.C. , Milligan, R.A. , Roll-Mecak, A. , Szyk, A. , Vemu, A. , Wilson-Kubalek, E.M. , Yu, I.

Date: 2015-03-05
Method: X-RAY DIFFRACTION
Resolution: 2.55 Å
Organism(s): Homo Sapiens
Sequences Data: 4YLR_A

4YLS

Tubulin glutamylase
Deposition Author(s): Garnham, C.P. , Lander, G.C. , Milligan, R.A. , Roll-Mecak, A. , Szyk, A. , Vemu, A. , Wilson-Kubalek, E.M. , Yu, I.

Date: 2015-03-05
Method: X-RAY DIFFRACTION
Resolution: 2.6 Å
Organism(s): Homo Sapiens
Sequences Data: 4YLS_A

5AN8

Cryo-electron microscopy structure of rabbit trpv2 ion channel
Deposition Author(s): Chung, B.C. , Herzik, M.A.J. , Lander, G.C. , Lee, S.Y. , Zubcevic, L.

Date: 2015-09-04
Method: ELECTRON MICROSCOPY
Resolution: 3.8 Å
Organism(s): Oryctolagus Cuniculus
Sequences Data: 5AN8_A , 5AN8_B , 5AN8_C , 5AN8_D

5VY3

Thermoplasma acidophilum 20s proteasome using 200kev with stage position
Deposition Author(s): Herzik Jr., M.A. , Lander, G.C. , Wu, M.

Date: 2017-05-24
Method: ELECTRON MICROSCOPY
Resolution: 3.1 Å
Organism(s): Thermoplasma Acidophilum
Sequences Data: 5VY3_A , 5VY3_C , 5VY3_E , 5VY3_G , 5VY3_I , 5VY3_K , 5VY3_M , 5VY3_O , 5VY3_Q , 5VY3_S , 5VY3_U , 5VY3_W , 5VY3_Y , 5VY3_0 , 5VY3_B , 5VY3_D , 5VY3_F , 5VY3_H , 5VY3_J , 5VY3_L , 5VY3_N , 5VY3_P , 5VY3_R , 5VY3_T , 5VY3_V , 5VY3_X , 5VY3_Z , 5VY3_1

5VY4

Thermoplasma acidophilum 20s proteasome using 200kev with image shift
Deposition Author(s): Herzik Jr., M.A. , Lander, G.C. , Wu, M.

Date: 2017-05-24
Method: ELECTRON MICROSCOPY
Resolution: 3.3 Å
Organism(s): Thermoplasma Acidophilum
Sequences Data: 5VY4_A , 5VY4_C , 5VY4_E , 5VY4_G , 5VY4_I , 5VY4_K , 5VY4_M , 5VY4_O , 5VY4_Q , 5VY4_S , 5VY4_U , 5VY4_W , 5VY4_Y , 5VY4_0 , 5VY4_B , 5VY4_D , 5VY4_F , 5VY4_H , 5VY4_J , 5VY4_L , 5VY4_N , 5VY4_P , 5VY4_R , 5VY4_T , 5VY4_V , 5VY4_X , 5VY4_Z , 5VY4_1