New methods of image processing and three-dimensional (3-D) reconstruction have made it possible to obtain structural models of complex molecular assemblies such as ribosomes and hemocyanin molecules at 2-3 nm resolution from electron micrographs of non-crystalline specimens. This capability will be used in 3-D localizations of functionally important ligand-binding sites on the ribosome and mappings of specific proteins in ribosomes and hemocyanin. Many of the studies will be done in collaborations with other laboratories. We will also obtain precise models, to a resolution of 2-3 nm, of the subunit:subunit association in the 70S (prokaryotic) and 80S (eukaryotic) ribosomes by 3-D matching of reconstructed subunits and ribosomes. Specifically we will reconstruct: (1) the 50S subunit from E. coli depleted of the L7/L12 proteins which are involved in the elongation factor-dependent GTPase activities associated with translation, (2) a 50S-spuromycin-antibody complex in order to map the position of the peptidyl transferase center, (3) the 70S monosome from E. coli with and without bound tRNA, (4) a eukaryotic 40S subunit labeled with a monospecific antibody directed against one of the regulatory phosphorylation sites on protein S6, (6) a complex consisting of the 40S subunit and initiation factor eIF-3, and (7) a mammalian 80S ribosome. We will also reconstruct the 24-subunit hemocyanin molecule from Androctonus australis and one or more selected monoclonal immunocomplexes to localize specific subunits. These studies will be supported by methodological investigations and extended by the use of cryo-electron microscopy of frozen- hydrated, unstained specimens.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM029169-10
Application #
3276683
Study Section
Biophysical Chemistry Study Section (BBCB)
Project Start
1982-04-01
Project End
1993-03-31
Budget Start
1991-04-01
Budget End
1992-03-31
Support Year
10
Fiscal Year
1991
Total Cost
Indirect Cost
Name
New York State Department of Health
Department
Type
DUNS #
002436061
City
Menands
State
NY
Country
United States
Zip Code
12204
Qiu, Weihua; Fu, Ziao; Xu, Guoyan G et al. (2018) Structure and activity of lipid bilayer within a membrane-protein transporter. Proc Natl Acad Sci U S A 115:12985-12990
Wang, Jimin; Liu, Zheng; Crabtree, Robert H et al. (2018) On the damage done to the structure of the Thermoplasma acidophilum proteasome by electron radiation. Protein Sci 27:2051-2061
Wang, Jimin; Liu, Zheng; Frank, Joachim et al. (2018) Identification of ions in experimental electrostatic potential maps. IUCrJ 5:375-381
Frank, Joachim (2018) New Opportunities Created by Single-Particle Cryo-EM: The Mapping of Conformational Space. Biochemistry 57:888
Santulli, Gaetano; Lewis, Daniel; des Georges, Amedee et al. (2018) Ryanodine Receptor Structure and Function in Health and Disease. Subcell Biochem 87:329-352
Hashem, Yaser; Frank, Joachim (2018) The Jigsaw Puzzle of mRNA Translation Initiation in Eukaryotes: A Decade of Structures Unraveling the Mechanics of the Process. Annu Rev Biophys :
Siegmund, Stephanie E; Grassucci, Robert; Carter, Stephen D et al. (2018) Three-Dimensional Analysis of Mitochondrial Crista Ultrastructure in a Patient with Leigh Syndrome by In Situ Cryoelectron Tomography. iScience 6:83-91
Twomey, Edward C; Yelshanskaya, Maria V; Grassucci, Robert A et al. (2017) Structural Bases of Desensitization in AMPA Receptor-Auxiliary Subunit Complexes. Neuron 94:569-580.e5
Frank, Joachim (2017) Time-resolved cryo-electron microscopy: Recent progress. J Struct Biol 200:303-306
Frank, Joachim (2017) The mechanism of translation. F1000Res 6:198

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