StayGold variants for molecular fusion and membrane-targeting applications

Author:

Ando Ryoko,Shimozono SatoshiORCID,Ago HideoORCID,Takagi Masatoshi,Sugiyama Mayu,Kurokawa Hiroshi,Hirano Masahiko,Niino Yusuke,Ueno GoORCID,Ishidate Fumiyoshi,Fujiwara Takahiro,Okada YasushiORCID,Yamamoto Masaki,Miyawaki AtsushiORCID

Abstract

AbstractAlthough StayGold is a bright and highly photostable fluorescent protein, its propensity for obligate dimer formation may hinder applications in molecular fusion and membrane targeting. To attain monovalent as well as bright and photostable labeling, we engineered tandem dimers of StayGold to promote dispersibility. On the basis of the crystal structure of this fluorescent protein, we disrupted the dimerization to generate a monomeric variant that offers improved photostability and brightness compared to StayGold. We applied the new monovalent StayGold tools to live-cell imaging experiments using spinning-disk laser-scanning confocal microscopy or structured illumination microscopy. We achieved cell-wide, high-spatiotemporal resolution and sustained imaging of dynamic subcellular events, including the targeting of endogenous condensin I to mitotic chromosomes, the movement of the Golgi apparatus and its membranous derivatives along microtubule networks, the distribution of cortical filamentous actin and the remolding of cristae membranes within mobile mitochondria.

Funder

Japan Agency for Medical Research and Development

Ministry of Education, Culture, Sports, Science and Technology

Marine Biomass Innovation Project

Riken Collaboration Seed Funnd

MEXT | JST | Core Research for Evolutional Science and Technology

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Molecular Biology,Biochemistry,Biotechnology

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