Structure 2008-01-01

Structure of the yeast tRNA m7G methylation complex.

Nicolas Leulliot, Maxime Chaillet, Dominique Durand, Nathalie Ulryck, Karine Blondeau, Herman van Tilbeurgh

Index: Structure 16 , 52-61, (2008)

Full Text: HTML

Abstract

Loss of N7-methylguanosine (m7G) modification is involved in the recently discovered rapid tRNA degradation pathway. In yeast, this modification is catalyzed by the heterodimeric complex composed of a catalytic subunit Trm8 and a noncatalytic subunit Trm82. We have solved the crystal structure of Trm8 alone and in complex with Trm82. Trm8 undergoes subtle conformational changes upon Trm82 binding which explains the requirement of Trm82 for activity. Cocrystallization with the S-adenosyl-methionine methyl donor defines the putative catalytic site and a guanine binding pocket. Small-angle X-ray scattering in solution of the Trm8-Trm82 heterodimer in complex with tRNA(Phe) has enabled us to propose a low-resolution structure of the ternary complex which defines the tRNA binding mode of Trm8-Trm82 and the structural elements contributing to specificity.


Related Compounds

  • 7-METHYLGUANO...

Related Articles:

Artificial receptors for the extraction of nucleoside metabolite 7-methylguanosine from aqueous media made by molecular imprinting.

2014-10-01

[J. Chromatogr. A. 1365 , 12-8, (2014)]

Loss of a Conserved tRNA Anticodon Modification Perturbs Plant Immunity.

2015-10-01

[PLoS Genet. 11 , e1005586, (2015)]

Functional screen reveals SARS coronavirus nonstructural protein nsp14 as a novel cap N7 methyltransferase.

2009-03-03

[Proc. Natl. Acad. Sci. U. S. A. 106 , 3484-3489, (2009)]

mRNA cap recognition: dominant role of enhanced stacking interactions between methylated bases and protein aromatic side chains.

1999-06-22

[Proc. Natl. Acad. Sci. U. S. A. 96 , 7149-7154, (1999)]

The "cap-binding slot" of an mRNA cap-binding protein: quantitative effects of aromatic side chain choice in the double-stacking sandwich with cap.

2002-06-18

[Biochemistry 41 , 7677-7687, (2002)]

More Articles...