| Literature DB >> 26577736 |
Mallika Sastry1, Carole A Bewley2, Peter D Kwong3.
Abstract
Isotope labeling of biologically interesting proteins is a prerequisite for structural and dynamics studies by NMR spectroscopy. Many of these proteins require mammalian cofactors, chaperons, or posttranslational modifications such as myristoylation, glypiation, disulfide bond formation, or N- or O-linked glycosylation; and mammalian cells have the necessary machinery to produce them in their functional forms. Here, we describe recent advances in mammalian expression, including an efficient adenoviral vector-based system, for the production of isotopically labeled proteins. This system enables expression of mammalian proteins and their complexes, including proteins that require posttranslational modifications. We describe a roadmap to produce isotopically labeled (15)N and (13)C posttranslationally modified proteins, such as the outer domain of HIV-1 gp120, which has four disulfide bonds and 15 potential sites of N-linked glycosylation. These methods should allow NMR spectroscopic analysis of the structure and function of posttranslationally modified and secreted, cytoplasmic, or membrane-bound proteins. 2015 Published by Elsevier Inc.Entities:
Keywords: Adenovirus vector; Glycoproteins; Isotope labeling; Mammalian expression
Mesh:
Substances:
Year: 2015 PMID: 26577736 PMCID: PMC6260808 DOI: 10.1016/bs.mie.2015.09.021
Source DB: PubMed Journal: Methods Enzymol ISSN: 0076-6879 Impact factor: 1.600