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Tardigrade CAHS Proteins Act as Molecular Swiss Army Knives to Mediate Desiccation Tolerance Through Multiple Mechanisms

Authors :
KC Shraddha
Giovanni Venturoli
Marco Malferrari
Cherie S. Hesgrove
Thomas C. Boothby
Sourav Biswas
Kenny H. Nguyen
Charles A. Childs
Bryan X. Medina
Francesco Francia
Shahar Sukenik
Erik W. Martin
Feng Yu
Vladimir Alvarado
Alex S. Holehouse
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

Tardigrades, also known as water bears, make up a phylum of small but extremely hardy animals, renowned for their ability to survive extreme stresses, including desiccation. How tardigrades survive desiccation is one of the enduring mysteries of animal physiology. Here we show that CAHS D, an intrinsically disordered protein belonging to a unique family of proteins possessed only by tardigrades, undergoes a liquid-to-gel phase transition in a concentration dependent manner. Unlike other gelling proteins, such as gelatin, our data support a mechanism in which gel formation of CAHS D is driven by intermolecular β-β interactions. We find that gel formation corresponds with strong coordination of water and slowing of water diffusion. The degree of water coordination correlates with the ability of CAHS D to protect lactate dehydrogenase from unfolding when dried. This implies that the mechanism for unfolding protection can be attributed to a combination of hydration and slowed molecular motion. Conversely, rapid diffusion leading to efficient molecular shielding appears to be the predominant mechanism preventing protein aggregation. Our study demonstrates that distinct mechanisms are required for holistic protection during desiccation, and that protectants, such as CAHS D, can act as molecular ‘Swiss Army Knives’ capable of providing protection through several different mechanisms simultaneously.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........81161de8e5e7afe8c64da9b80b425b2f
Full Text :
https://doi.org/10.1101/2021.08.16.456555