| Literature DB >> 34072847 |
Patricia Alvarez-Sieiro1, Hendrik R Sikkema1, Bert Poolman1.
Abstract
Many proteins have a multimeric structure and are composed of two or more identical subunits. While this can be advantageous for the host organism, it can be a challenge when targeting specific residues in biochemical analyses. In vitro splitting and re-dimerization to circumvent this problem is a tedious process that requires stable proteins. We present an in vivo approach to transform homodimeric proteins into apparent heterodimers, which then can be purified using two-step affinity-tag purification. This opens the door to both practical applications such as smFRET to probe the conformational dynamics of homooligomeric proteins and fundamental research into the mechanism of protein multimerization, which is largely unexplored for membrane proteins. We show that expression conditions are key for the formation of heterodimers and that the order of the differential purification and reconstitution of the protein into nanodiscs is important for a functional ABC-transporter complex.Entities:
Keywords: ABC-transporter; OpuA; affinity purification; homo- and heterodimeric complexes; mechanism of multimerization; membrane protein; nanodisc reconstitution
Year: 2021 PMID: 34072847 DOI: 10.3390/ijms22115912
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923