Modeling of the structure of ribosomal protein L1 from the archaeon Haloarcula marismortui


Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

The halophilic archaeon Haloarcula marismortui proliferates in the Dead Sea at extremely high salt concentrations (higher than 3 M). This is the only archaeon, for which the crystal structure of the ribosomal 50S subunit was determined. However, the structure of the functionally important side protuberance containing the abnormally negatively charged protein L1 (HmaL1) was not visualized. Attempts to crystallize HmaL1 in the isolated state or as its complex with RNA using normal salt concentrations (≤500 mM) failed. A theoretical model of HmaL1 was built based on the structural data for homologs of the protein L1 from other organisms, and this model was refined by molecular dynamics methods. Analysis of this model showed that the protein HmaL1 can undergo aggregation due to the presence of a cluster of positive charges unique for proteins L1. This cluster is located at the RNA–protein interface, which interferes with the crystallization of HmaL1 and the binding of the latter to RNA.

About the authors

N. A. Nevskaya

Institute of Protein Research

Author for correspondence.
Email: nevskaya@protres.ru
Russian Federation, Pushchino, Moscow oblast, 142290

V. G. Kljashtorny

Institute of Protein Research

Email: nevskaya@protres.ru
Russian Federation, Pushchino, Moscow oblast, 142290

A. V. Vakhrusheva

Institute of Protein Research

Email: nevskaya@protres.ru
Russian Federation, Pushchino, Moscow oblast, 142290

M. B. Garber

Institute of Protein Research

Email: nevskaya@protres.ru
Russian Federation, Pushchino, Moscow oblast, 142290

S. V. Nikonov

Institute of Protein Research

Email: nevskaya@protres.ru
Russian Federation, Pushchino, Moscow oblast, 142290

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2017 Pleiades Publishing, Inc.