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Showing all 50 items for (author: kolb & p)

EMDB-17793:
Cryo-EM structure of cell-free synthesized human histamine H2 receptor coupled to heterotrimeric Gs protein in lipid environment
Method: single particle / : Schnelle K, Koeck Z, Persechino M, Umbach S, Schihada H, Januliene D, Parey K, Pockes S, Kolb P, Doetsch V, Moeller A, Hilger D, Bernhard F

PDB-8pok:
Cryo-EM structure of cell-free synthesized human histamine H2 receptor coupled to heterotrimeric Gs protein in lipid environment
Method: single particle / : Schnelle K, Koeck Z, Persechino M, Umbach S, Schihada H, Januliene D, Parey K, Pockes S, Kolb P, Doetsch V, Moeller A, Hilger D, Bernhard F

EMDB-15700:
Type 3 secretion system needle complex of Shigella flexneri
Method: single particle / : Lunelli M

EMDB-15701:
Outer membrane secretin pore of the type 3 secretion system of Shigella flexneri
Method: single particle / : Lunelli M

EMDB-15702:
Inner membrane ring and secretin N0 N1 domains of the type 3 secretion system of Shigella flexneri
Method: single particle / : Lunelli M

EMDB-15703:
Inner membrane ring of the type 3 secretion system of Shigella flexneri
Method: single particle / : Lunelli M

PDB-8axk:
Type 3 secretion system export apparatus core, inner rod and needle of Shigella flexneri
Method: single particle / : Lunelli M

PDB-8axl:
Outer membrane secretin pore of the type 3 secretion system of Shigella flexneri
Method: single particle / : Lunelli M

PDB-8axn:
Inner membrane ring and secretin N0 N1 domains of the type 3 secretion system of Shigella flexneri
Method: single particle / : Lunelli M

EMDB-14115:
Outward-facing apo-form of auxin transporter PIN8
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

EMDB-14116:
Outward-facing auxin bound form of auxin transporter PIN8
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

EMDB-14117:
Inward-facing NPA bound form of auxin transporter PIN8
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

EMDB-14118:
Outward-facing apo-form of auxin transporter PIN8 in detergent
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

PDB-7qp9:
Outward-facing apo-form of auxin transporter PIN8
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

PDB-7qpa:
Outward-facing auxin bound form of auxin transporter PIN8
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

PDB-7qpc:
Inward-facing NPA bound form of auxin transporter PIN8
Method: single particle / : Ung KL, Winkler MBL, Dedic E, Stokes DL, Pedersen BP

EMDB-11921:
Cytochrome c oxidase structure in P-state
Method: single particle / : Kolbe F, Safarian S, Michel H

EMDB-11922:
Cytochrome c oxidase structure in R-state
Method: single particle / : Kolbe F, Safarian S, Michel H

EMDB-11924:
Cytochrome c oxidase structure in F-state
Method: single particle / : Kolbe F, Safarian S, Michel H

EMDB-11925:
Cytochrome c oxidase structure in O-state
Method: single particle / : Kolbe F, Safarian S, Michel H

PDB-7ate:
Cytochrome c oxidase structure in P-state
Method: single particle / : Kolbe F, Safarian S, Michel H

PDB-7atn:
Cytochrome c oxidase structure in R-state
Method: single particle / : Kolbe F, Safarian S, Michel H

PDB-7au3:
Cytochrome c oxidase structure in F-state
Method: single particle / : Kolbe F, Safarian S, Michel H

PDB-7au6:
Cytochrome c oxidase structure in O-state
Method: single particle / : Kolbe F, Safarian S, Michel H

EMDB-12007:
Programmable icosahedral shell system for virus trapping: DNA-origami half octahedron
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12008:
Programmable icosahedral shell system for virus trapping: DNA-origami T=9 triangle (pentamer)
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12009:
Programmable icosahedral shell system for virus trapping: DNA-origami octahedron triangle
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12010:
Programmable icosahedral shell system for virus trapping: DNA-origami T=1 triangle
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12011:
Programmable icosahedral shell system for virus trapping: DNA-origami T=3 triangle
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12012:
Programmable icosahedral shell system for virus trapping: DNA-origami T=4 triangle (isosceles)
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12013:
Programmable icosahedral shell system for virus trapping: DNA-origami T=4 triangle (equilateral)
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12014:
Programmable icosahedral shell system for virus trapping: DNA-origami T=9 triangle (hexamer 1)
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12015:
Programmable icosahedral shell system for virus trapping: DNA-origami T=9 triangle (hexamer 2)
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12016:
Programmable icosahedral shell system for virus trapping: DNA-origami octahedron shell
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12019:
Programmable icosahedral shell system for virus trapping: DNA-origami T=3 shell
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12020:
Programmable icosahedral shell system for virus trapping: DNA-origami T=4 shell
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12021:
Programmable icosahedral shell system for virus trapping: DNA-origami T=1 shell
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12022:
Programmable icosahedral shell system for virus trapping: T=1 shell trapping a HBV core particle
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12023:
Programmable icosahedral shell system for virus trapping: DNA-origami T=1 shell with pentagonal aperture
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12024:
Programmable icosahedral shell system for virus trapping: DNA-origami T=1 shell (at 25mM MgCl2)
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12044:
Programmable icosahedral shell system for virus trapping: DNA-origami half octahedron shell trapping a Hepatitis B core particle
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12045:
Programmable icosahedral shell system for virus trapping: DNA-origami half T=1 shell
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12046:
Programmable icosahedral shell system for virus trapping: DNA-origami triangular brick
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-12049:
Programmable icosahedral shell system for virus trapping: spiky DNA-origami T=1 shell
Method: single particle / : Sigl C, Willner EM, Engelen W, Kretzmann JA, Sachenbacher K, Liedl A, Kolbe F, Wilsch F, Aghvami SA, Protzer U, Hagan MF, Fraden S, Dietz H

EMDB-10040:
Inner membrane ring and secretin N0 N1 domains of the Shigella type 3 secretion system
Method: single particle / : Lunelli M, Kamprad A

EMDB-10045:
Inner membrane ring of the Shigella type 3 secretion system
Method: single particle / : Lunelli M, Kamprad A

EMDB-10046:
Needle complex of the Shigella type 3 secretion system
Method: single particle / : Lunelli M, Kamprad A

PDB-6rwk:
MxiD N0 N1 and MxiG C-terminal domains of the Shigella type 3 secretion system
Method: single particle / : Kamprad A, Lunelli M

PDB-6rwx:
Periplasmic inner membrane ring of the Shigella type 3 secretion system
Method: single particle / : Kamprad A, Lunelli M

PDB-6rwy:
Export apparatus core and inner rod of the Shigella type 3 secretion system
Method: single particle / : Lunelli M, Kamprad A

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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External links:COVID-19 featured content - PDBj / Molecule of the Month (242):Coronavirus Proteases

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