In vitro reconstitution of an mRNA-transport complex reveals mechanisms of assembly and motor activation

Author:

Heym Roland G.122,Zimmermann Dennis23,Edelmann Franziska T.1,Israel Lars2,Ökten Zeynep2,Kovar David R.3,Niessing Dierk122

Affiliation:

1. Institute of Structural Biology, Helmholtz Zentrum München – German Research Center for Environmental Health, 85764 Neuherberg, Germany

2. Gene Center, Department of Biochemistry, Institute for Anatomy and Cell Biology, and Adolf Butenandt Institute, Ludwig-Maximilians University, 81377 Munich, Germany

3. Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, IL 60637

Abstract

The assembly and composition of ribonucleic acid (RNA)–transporting particles for asymmetric messenger RNA (mRNA) localization is not well understood. During mitosis of budding yeast, the Swi5p-dependent HO expression (SHE) complex transports a set of mRNAs into the daughter cell. We recombinantly reconstituted the core SHE complex and assessed its properties. The cytoplasmic precomplex contains only one motor and is unable to support continuous transport. However, a defined interaction with a second, RNA-bound precomplex after its nuclear export dimerizes the motor and activates processive RNA transport. The run length observed in vitro is compatible with long-distance transport in vivo. Surprisingly, SHE complexes that either contain or lack RNA cargo show similar motility properties, demonstrating that the RNA-binding protein and not its cargo activates motility. We further show that SHE complexes have a defined size but multimerize into variable particles upon binding of RNAs with multiple localization elements. Based on these findings, we provide an estimate of number, size, and composition of such multimeric SHE particles in the cell.

Publisher

Rockefeller University Press

Subject

Cell Biology

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