A linker protein from a red-type pyrenoid phase separates with Rubisco via oligomerizing sticker motifs

Author:

Oh Zhen Guo1ORCID,Ang Warren Shou Leong1ORCID,Poh Cheng Wei1ORCID,Lai Soak-Kuan1,Sze Siu Kwan1,Li Hoi-Yeung1,Bhushan Shashi12,Wunder Tobias1,Mueller-Cajar Oliver12ORCID

Affiliation:

1. School of Biological Sciences, Nanyang Technological University, Singapore 637551, Singapore

2. Nanyang Institute of Structural Biology, Nanyang Technological University, Singapore 639798, Singapore

Abstract

The slow kinetics and poor substrate specificity of the key photosynthetic CO 2 -fixing enzyme Rubisco have prompted the repeated evolution of Rubisco-containing biomolecular condensates known as pyrenoids in the majority of eukaryotic microalgae. Diatoms dominate marine photosynthesis, but the interactions underlying their pyrenoids are unknown. Here, we identify and characterize the Rubisco linker protein PYCO1 from Phaeodactylum tricornutum . PYCO1 is a tandem repeat protein containing prion-like domains that localizes to the pyrenoid. It undergoes homotypic liquid–liquid phase separation (LLPS) to form condensates that specifically partition diatom Rubisco. Saturation of PYCO1 condensates with Rubisco greatly reduces the mobility of droplet components. Cryo–electron microscopy and mutagenesis data revealed the sticker motifs required for homotypic and heterotypic phase separation. Our data indicate that the PYCO1–Rubisco network is cross-linked by PYCO1 stickers that oligomerize to bind to the small subunits lining the central solvent channel of the Rubisco holoenzyme. A second sticker motif binds to the large subunit. Pyrenoidal Rubisco condensates are highly diverse and tractable models of functional LLPS.

Funder

Ministry of Education - Singapore

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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