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6LR6

The crystal structure of human cytoplasmic LRS

Summary for 6LR6
Entry DOI10.2210/pdb6lr6/pdb
DescriptorLeucine--tRNA ligase, cytoplasmic, 5'-O-(L-leucylsulfamoyl)adenosine, 4-Chloro-3-aminomethyl-7-[ethoxy]-3H-benzo[C][1,2]oxaborol-1-ol modified adenosine, ... (4 entities in total)
Functional Keywordstrna, aminoacylation, protein translation, leurs, rna binding protein
Biological sourceHomo sapiens (Human)
Total number of polymer chains2
Total formula weight252431.73
Authors
Liu, R.J.,Long, T.,Li, H.,Li, J.,Zhao, J.H.,Lin, J.Z.,Palencia, A.,Wang, M.Z.,Cusack, S.,Wang, E.D. (deposition date: 2020-01-15, release date: 2020-03-25, Last modification date: 2023-11-29)
Primary citationLiu, R.J.,Long, T.,Li, H.,Zhao, J.,Li, J.,Wang, M.,Palencia, A.,Lin, J.,Cusack, S.,Wang, E.D.
Molecular basis of the multifaceted functions of human leucyl-tRNA synthetase in protein synthesis and beyond.
Nucleic Acids Res., 48:4946-4959, 2020
Cited by
PubMed Abstract: Human cytosolic leucyl-tRNA synthetase (hcLRS) is an essential and multifunctional enzyme. Its canonical function is to catalyze the covalent ligation of leucine to tRNALeu, and it may also hydrolyze mischarged tRNAs through an editing mechanism. Together with eight other aminoacyl-tRNA synthetases (AaRSs) and three auxiliary proteins, it forms a large multi-synthetase complex (MSC). Beyond its role in translation, hcLRS has an important moonlight function as a leucine sensor in the rapamycin complex 1 (mTORC1) pathway. Since this pathway is active in cancer development, hcLRS is a potential target for anti-tumor drug development. Moreover, LRS from pathogenic microbes are proven drug targets for developing antibiotics, which however should not inhibit hcLRS. Here we present the crystal structure of hcLRS at a 2.5 Å resolution, the first complete structure of a eukaryotic LRS, and analyze the binding of various compounds that target different sites of hcLRS. We also deduce the assembly mechanism of hcLRS into the MSC through reconstitution of the entire mega complex in vitro. Overall, our study provides the molecular basis for understanding both the multifaceted functions of hcLRS and for drug development targeting these functions.
PubMed: 32232361
DOI: 10.1093/nar/gkaa189
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3.009 Å)
Structure validation

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