Sulfur sequestration promotes multicellularity during nutrient limitation

Author:

Kelly BethORCID,Carrizo Gustavo E.,Edwards-Hicks JoyORCID,Sanin David E.ORCID,Stanczak Michal A.ORCID,Priesnitz Chantal,Flachsmann Lea J.,Curtis Jonathan D.,Mittler Gerhard,Musa Yaarub,Becker ThomasORCID,Buescher Joerg M.ORCID,Pearce Erika L.ORCID

Abstract

AbstractThe behaviour ofDictyostelium discoideumdepends on nutrients1. When sufficient food is present these amoebae exist in a unicellular state, but upon starvation they aggregate into a multicellular organism2,3. This biology makesD. discoideuman ideal model for investigating how fundamental metabolism commands cell differentiation and function. Here we show that reactive oxygen species—generated as a consequence of nutrient limitation—lead to the sequestration of cysteine in the antioxidant glutathione. This sequestration limits the use of the sulfur atom of cysteine in processes that contribute to mitochondrial metabolism and cellular proliferation, such as protein translation and the activity of enzymes that contain an iron–sulfur cluster. The regulated sequestration of sulfur maintainsD. discoideumin a nonproliferating state that paves the way for multicellular development. This mechanism of signalling through reactive oxygen species highlights oxygen and sulfur as simple signalling molecules that dictate cell fate in an early eukaryote, with implications for responses to nutrient fluctuations in multicellular eukaryotes.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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