Crystal structure of the human 40s ribosomal subunit in complex with denr-mct-1. Deposition Author(s): Dmitriev, S.E. , Garber, M.B. , Lomakin, I.B. , Steitz, T.A. , Stolboushkina, E.A. , Vaidya, A.T.
Date: 2017-05-24 Method: X-RAY DIFFRACTION Resolution: 6 Å Organism(s): Homo Sapiens Sequences Data: 5VYC_T1 , 5VYC_T2 , 5VYC_T3 , 5VYC_T4 , 5VYC_T5 , 5VYC_T6 , 5VYC_C1 , 5VYC_C2 , 5VYC_C3 , 5VYC_C4 , 5VYC_C5 , 5VYC_C6 , 5VYC_G1 , 5VYC_G2 , 5VYC_G3 , 5VYC_G4 , 5VYC_G5 , 5VYC_G6 , 5VYC_J1 , 5VYC_J2 , 5VYC_J3 , 5VYC_J4 , 5VYC_J5 , 5VYC_J6 , 5VYC_M1 , 5VYC_M2 , 5VYC_M3 , 5VYC_M4 , 5VYC_M5 , 5VYC_M6 , 5VYC_N1 , 5VYC_N2 , 5VYC_N3 , 5VYC_N4 , 5VYC_N5 , 5VYC_N6 , 5VYC_O1 , 5VYC_O2 , 5VYC_O3 , 5VYC_O4 , 5VYC_O5 , 5VYC_O6 , 5VYC_W1 , 5VYC_W2 , 5VYC_W3 , 5VYC_W4 , 5VYC_W5 , 5VYC_W6 , 5VYC_Y1 , 5VYC_Y2 , 5VYC_Y3 , 5VYC_Y4 , 5VYC_Y5 , 5VYC_Y6 , 5VYC_Z1 , 5VYC_Z2 , 5VYC_Z3 , 5VYC_Z4 , 5VYC_Z5 , 5VYC_Z6 , 5VYC_B1 , 5VYC_B2 , 5VYC_B3 , 5VYC_B4 , 5VYC_B5 , 5VYC_B6 , 5VYC_U1 , 5VYC_U2 , 5VYC_U3 , 5VYC_U4 , 5VYC_U5 , 5VYC_U6 , 5VYC_E1 , 5VYC_E2 , 5VYC_E3 , 5VYC_E4 , 5VYC_E5 , 5VYC_E6 , 5VYC_I1 , 5VYC_I2 , 5VYC_I3 , 5VYC_I4 , 5VYC_I5 , 5VYC_I6 , 5VYC_A1 , 5VYC_A2 , 5VYC_A3 , 5VYC_A4 , 5VYC_A5 , 5VYC_A6 , 5VYC_D1 , 5VYC_D2 , 5VYC_D3 , 5VYC_D4 , 5VYC_D5 , 5VYC_D6 , 5VYC_F1 , 5VYC_F2 , 5VYC_F3 , 5VYC_F4 , 5VYC_F5 , 5VYC_F6 , 5VYC_H1 , 5VYC_H2 , 5VYC_H3 , 5VYC_H4 , 5VYC_H5 , 5VYC_H6 , 5VYC_K1 , 5VYC_K2 , 5VYC_K3 , 5VYC_K4 , 5VYC_K5 , 5VYC_K6 , 5VYC_V1 , 5VYC_V2 , 5VYC_V3 , 5VYC_V4 , 5VYC_V5 , 5VYC_V6 , 5VYC_L1 , 5VYC_L2 , 5VYC_L3 , 5VYC_L4 , 5VYC_L5 , 5VYC_L6 , 5VYC_P1 , 5VYC_P2 , 5VYC_P3 , 5VYC_P4 , 5VYC_P5 , 5VYC_P6 , 5VYC_Q1 , 5VYC_Q2 , 5VYC_Q3 , 5VYC_Q4 , 5VYC_Q5 , 5VYC_Q6 , 5VYC_R1 , 5VYC_R2 , 5VYC_R3 , 5VYC_R4 , 5VYC_R5 , 5VYC_R6 , 5VYC_S1 , 5VYC_S2 , 5VYC_S3 , 5VYC_S4 , 5VYC_S5 , 5VYC_S6 , 5VYC_X1 , 5VYC_X2 , 5VYC_X3 , 5VYC_X4 , 5VYC_X5 , 5VYC_X6
Crystal structure of the c-terminal domain of human eif2d at 1.4 a resolution Deposition Author(s): Dmitriev, S.E. , Joseph, N.N. , Lomakin, I.B. , Steitz, T.A. , Vaidya, A.T.
Date: 2017-06-06 Method: X-RAY DIFFRACTION Resolution: 1.4 Å Organism(s): Homo Sapiens Sequences Data: 5W2F_A
Crystal structure of the heterocomplex between human keratin 1 coil 1b containing s233l mutation and wild-type human keratin 10 coil 1b Deposition Author(s): Bunick, C.G. , Eldirany, S.A. , Lomakin, I.B.
Date: 2018-07-11 Method: X-RAY DIFFRACTION Resolution: 2.386 Å Organism(s): Homo Sapiens Sequences Data: 6E2J_A , 6E2J_B
Crystal structure of the wild-type heterocomplex between coil 1b domains of human intermediate filament proteins keratin 1 (krt1) and keratin 10 (krt10) Deposition Author(s): Bunick, C.G. , Eldirany, S.A. , Lomakin, I.B.
Date: 2018-08-07 Method: X-RAY DIFFRACTION Resolution: 2.983 Å Organism(s): Homo Sapiens Sequences Data: 6EC0_A , 6EC0_B
Crystal structure of the denr-mct-1 complex Deposition Author(s): Dmitriev, S.E. , Lomakin, I.B. , Steitz, T.A.
Date: 2018-10-16 Method: X-RAY DIFFRACTION Resolution: 2.001 Å Organism(s): Homo Sapiens Sequences Data: 6MS4_A , 6MS4_B
Crystal structure of the heterocomplex between coil 2b domains of wild-type keratin 1 (krt1) and keratin 10 (krt10) containing mutation cys401ala Deposition Author(s): Bunick, C.G. , Lomakin, I.B.
Date: 2019-10-30 Method: X-RAY DIFFRACTION Resolution: 2.069 Å Organism(s): Homo Sapiens Sequences Data: 6UUI_C , 6UUI_X
Crystal structure of the c-terminal domain of denr Deposition Author(s): Lomakin, I.B. , Steitz, T.A.
Date: 2020-02-04 Method: X-RAY DIFFRACTION Resolution: 1.74 Å Organism(s): Homo Sapiens Sequences Data: 6VPQ_A , 6VPQ_B , 6VPQ_C , 6VPQ_D , 6VPQ_E , 6VPQ_F
Crystal structure of the c-terminal domain of denr Deposition Author(s): Lomakin, I.B. , Steitz, T.A.
Date: 2020-02-04 Method: X-RAY DIFFRACTION Resolution: 2.2 Å Organism(s): Homo Sapiens Sequences Data: 6VPR_A , 6VPR_B
Crystal structure of the thermus thermophilus 70s ribosome in complex with sarecycline, uuc-mrna, and deacylated p-site trna at 2.80a resolution Deposition Author(s): Batool, Z. , Bunick, C.G. , Lomakin, I.B. , Polikanov, Y.S.
Date: 2020-07-09 Method: X-RAY DIFFRACTION Resolution: 2.8 Å Organism(s): Escherichia Coli , Thermus Thermophilus Hb8 , Synthetic Construct Sequences Data: 6XQD_1A , 6XQD_2A , 6XQD_1O , 6XQD_2O , 6XQD_1P , 6XQD_2P , 6XQD_1Q , 6XQD_2Q , 6XQD_1R , 6XQD_2R , 6XQD_1S , 6XQD_2S , 6XQD_1T , 6XQD_2T , 6XQD_1U , 6XQD_2U , 6XQD_1V , 6XQD_2V , 6XQD_1W , 6XQD_2W , 6XQD_1X , 6XQD_2X , 6XQD_1B , 6XQD_2B , 6XQD_1Y , 6XQD_2Y , 6XQD_1Z , 6XQD_2Z , 6XQD_10 , 6XQD_20 , 6XQD_11 , 6XQD_21 , 6XQD_12 , 6XQD_22 , 6XQD_13 , 6XQD_23 , 6XQD_14 , 6XQD_24 , 6XQD_15 , 6XQD_25 , 6XQD_16 , 6XQD_26 , 6XQD_17 , 6XQD_27 , 6XQD_1D , 6XQD_2D , 6XQD_18 , 6XQD_28 , 6XQD_19 , 6XQD_29 , 6XQD_1C , 6XQD_2C , 6XQD_1E , 6XQD_2E , 6XQD_1F , 6XQD_2F , 6XQD_1G , 6XQD_2G , 6XQD_1H , 6XQD_2H , 6XQD_1I , 6XQD_2I , 6XQD_1J , 6XQD_2J , 6XQD_1K , 6XQD_2K , 6XQD_1L , 6XQD_2L , 6XQD_1M , 6XQD_2M , 6XQD_1N , 6XQD_2N
Crystal structure of the thermus thermophilus 70s ribosome in complex with sarecycline, uaa-mrna, and deacylated p-site trna at 3.00a resolution Deposition Author(s): Batool, Z. , Bunick, C.G. , Lomakin, I.B. , Polikanov, Y.S.
Date: 2020-07-09 Method: X-RAY DIFFRACTION Resolution: 3 Å Organism(s): Escherichia Coli , Thermus Thermophilus Hb8 , Synthetic Construct Sequences Data: 6XQE_1A , 6XQE_2A , 6XQE_1O , 6XQE_2O , 6XQE_1P , 6XQE_2P , 6XQE_1Q , 6XQE_2Q , 6XQE_1R , 6XQE_2R , 6XQE_1S , 6XQE_2S , 6XQE_1T , 6XQE_2T , 6XQE_1U , 6XQE_2U , 6XQE_1V , 6XQE_2V , 6XQE_1W , 6XQE_2W , 6XQE_1X , 6XQE_2X , 6XQE_1B , 6XQE_2B , 6XQE_1Y , 6XQE_2Y , 6XQE_1Z , 6XQE_2Z , 6XQE_10 , 6XQE_20 , 6XQE_11 , 6XQE_21 , 6XQE_12 , 6XQE_22 , 6XQE_13 , 6XQE_23 , 6XQE_14 , 6XQE_24 , 6XQE_15 , 6XQE_25 , 6XQE_16 , 6XQE_26 , 6XQE_17 , 6XQE_27 , 6XQE_1D , 6XQE_2D , 6XQE_18 , 6XQE_28 , 6XQE_19 , 6XQE_29 , 6XQE_1C , 6XQE_2C , 6XQE_1E , 6XQE_2E , 6XQE_1F , 6XQE_2F , 6XQE_1G , 6XQE_2G , 6XQE_1H , 6XQE_2H , 6XQE_1I , 6XQE_2I , 6XQE_1J , 6XQE_2J , 6XQE_1K , 6XQE_2K , 6XQE_1L , 6XQE_2L , 6XQE_1M , 6XQE_2M , 6XQE_1N , 6XQE_2N