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Showing 1 - 50 of 462 items for (author: natalia & j)

EMDB-76291: 
Cryo-EM structure of human DDB1-CRBN-GSPT1 in complex with GT19630
Method: single particle / : Huang J, Chu HF, Tong L

PDB-12bp: 
Cryo-EM structure of human DDB1-CRBN-GSPT1 in complex with GT19630
Method: single particle / : Huang J, Chu HF, Tong L

EMDB-54637: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with tRNAs in intermediate state (AP*)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-54638: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with tRNAs in initial hybrid state (H1)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-54639: 
Structure of human mitochondrial COX1-translating ribosome nascent chain-OXA1L/MITRAC complex in open state (open COX1-mtRNC-OXA1L/MITRAC)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-54640: 
Structure of human mitochondrial COX1-translating ribosome nascent chain-OXA1L/MITRAC complex in closed state (closed COX1-mtRNC-OXA1L/MITRAC)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-55836: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with peptidyl-tRNA (P)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-55837: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with tRNAs in classical pre-translocation state (AP)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-55838: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with tRNAs in late hybrid state (H2)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

PDB-9s7b: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with tRNAs in intermediate state (AP*)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

PDB-9s7c: 
Structure of human mitochondrial COX1-translating ribosome nascent chain complex with tRNAs in initial hybrid state (H1)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

PDB-9s7d: 
Structure of human mitochondrial COX1-translating ribosome nascent chain-OXA1L/MITRAC complex in open state (open COX1-mtRNC-OXA1L/MITRAC)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

PDB-9s7e: 
Structure of human mitochondrial COX1-translating ribosome nascent chain-OXA1L/MITRAC complex in closed state (closed COX1-mtRNC-OXA1L/MITRAC)
Method: single particle / : Schoendorf T, Petrychenko V, Kotan I, Cruz-Zaragoza LD, Dahal D, Wang C, Gal T, Dennerlein S, Kramer G, Fischer N, Rehling P

EMDB-49451: 
Cryo-EM structure of the PI3K alpha/KRas complex on POPC/POPS/PIP2 nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49456: 
Cryo-EM structure of the Class 2 PI3K alpha/KRas complex on POPC/POPS nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9ni3: 
Cryo-EM structure of the PI3K alpha/KRas complex on POPC/POPS/PIP2 nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9ni8: 
Cryo-EM structure of the Class 2 PI3K alpha/KRas complex on POPC/POPS nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49455: 
Cryo-EM structure of the Class 3 PI3K alpha/KRas complex on POPC/POPS nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49460: 
Cryo-EM structure of the PI3K alpha/KRas complex on POPC/POPS/PIP2 nanodiscs low-pass filtered to 5 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9ni7: 
Cryo-EM structure of the Class 3 PI3K alpha/KRas complex on POPC/POPS nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9nif: 
Cryo-EM structure of the PI3K alpha/KRas complex on POPC/POPS/PIP2 nanodiscs low-pass filtered to 5 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49452: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex dimer on POPC/POPS/PIP2 nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49453: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex on POPC/POPS/PIP2 nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49454: 
Cryo-EM structure of the Class 1 PI3K alpha/KRas complex on POPC/POPS nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49458: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex dimer on POPC/POPS/PIP2 nanodiscs low-pass filtered to 5 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49459: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex on POPC/POPS/PIP2 nanodiscs low-pass filtered to 5 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-49519: 
Cryo-EM structure of the Class 1 PI3K alpha/KRas complex on POPC/POPS nanodiscs low-pass filtered to 10 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9ni4: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex dimer on POPC/POPS/PIP2 nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9ni5: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex on POPC/POPS/PIP2 nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9ni6: 
Cryo-EM structure of the Class 1 PI3K alpha/KRas complex on POPC/POPS nanodiscs
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9nid: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex dimer on POPC/POPS/PIP2 nanodiscs low-pass filtered to 5 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9nie: 
Cryo-EM structure of the PI3K alpha/KRas/HER3 phosphopeptide complex on POPC/POPS/PIP2 nanodiscs low-pass filtered to 5 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

PDB-9nlc: 
Cryo-EM structure of the Class 1 PI3K alpha/KRas complex on POPC/POPS nanodiscs low-pass filtered to 10 angstroms
Method: single particle / : Torosyan H, Natalia J, Verba KA

EMDB-74113: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1B2
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

EMDB-74114: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1G1
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

PDB-9zen: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1B2
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

PDB-9zeo: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1G1
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

EMDB-52419: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Open Tetramer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52420: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed1 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52421: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed2 tetramer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52422: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Empty monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52423: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor-monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52424: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Cofactor/ligand-monomer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52425: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor/ligand-monomer in Open tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52426: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor/ligand-monomer in Closed1 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52427: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor/ligand-monomer in Closed2 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52428: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Total-monomer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52429: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed2 tetramer with cofactor/ligand-monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9hux: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Open Tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9huy: 
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed1 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN
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