𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Structure of the C-terminal domain of nsp4 from feline coronavirus

✍ Scribed by Manolaridis, Ioannis ;Wojdyla, Justyna A. ;Panjikar, Santosh ;Snijder, Eric J. ;Gorbalenya, Alexander E. ;Berglind, Hanna ;Nordlund, Pär ;Coutard, Bruno ;Tucker, Paul A.


Publisher
International Union of Crystallography
Year
2009
Tongue
English
Weight
628 KB
Volume
65
Category
Article
ISSN
0907-4449

No coin nor oath required. For personal study only.

✦ Synopsis


Coronaviruses are a family of positive-stranded RNA viruses that includes important pathogens of humans and other animals. The large coronavirus genome (26-31 kb) encodes 15-16 nonstructural proteins (nsps) that are derived from two replicase polyproteins by autoproteolytic processing. The nsps assemble into the viral replication-transcription complex and nsp3, nsp4 and nsp6 are believed to anchor this enzyme complex to modified intracellular membranes. The largest part of the coronavirus nsp4 subunit is hydrophobic and is predicted to be embedded in the membranes. In this report, a conserved C-terminal domain ( approximately 100 amino-acid residues) has been delineated that is predicted to face the cytoplasm and has been isolated as a soluble domain using library-based construct screening. A prototypical crystal structure at 2.8 A resolution was obtained using nsp4 from feline coronavirus. Unmodified and SeMet-substituted proteins were crystallized under similar conditions, resulting in tetragonal crystals that belonged to space group P4(3). The phase problem was initially solved by single isomorphous replacement with anomalous scattering (SIRAS), followed by molecular replacement using a SIRAS-derived composite model. The structure consists of a single domain with a predominantly alpha-helical content displaying a unique fold that could be engaged in protein-protein interactions.


📜 SIMILAR VOLUMES


Structure of the Escherichia coli RNA po
✍ Lara-González, Samuel ;Birktoft, Jens J. ;Lawson, Catherine L. 📂 Article 📅 2010 🏛 International Union of Crystallography 🌐 English ⚖ 883 KB

The α subunit C-terminal domain (αCTD) of RNA polymerase (RNAP) is a key element in transcription activation in__Escherichia coli__, possessing determinants responsible for the interaction of RNAP with DNA and with transcription factors. Here, the crystal structure of__E. coli__αCTD (α subunit resid

Refined solution structure of the c-term
✍ Astrid P.A.M. Eijkelenboom; Remco Sprangers; Karl Hård; Ramon A. Puras Lutzke; R 📂 Article 📅 1999 🏛 John Wiley and Sons 🌐 English ⚖ 352 KB 👁 2 views

The structure of the C-terminal DNA-binding domain of human immunovirus-1 integrase has been refined using nuclear magnetic resonance spectroscopy. The protein is a dimer in solution and shows a well-defined dimer interface. The folding topology of the monomer consists of a fivestranded ␤-barrel tha

Structure of the mouse galectin-4 N-term
✍ Krejčiříková, Veronika ;Pachl, Petr ;Fábry, Milan ;Malý, Petr ;Řezáčová, Pavlína 📂 Article 📅 2011 🏛 International Union of Crystallography 🌐 English ⚖ 870 KB

Galectin-4, a member of the tandem-repeat subfamily of galectins, participates in cell-membrane interactions and plays an important role in cell adhesion and modulation of immunity and malignity. The oligosaccharide specificity of the mouse galectin-4 carbohydrate-recognition domains (CRDs) has been