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Cold Temperature Induces the Reprogramming of Proteolytic Pathways in Yeast.


ABSTRACT: Despite much evidence of the involvement of the proteasome-ubiquitin signaling system in temperature stress response, the dynamics of the ubiquitylome during cold response has not yet been studied. Here, we have compared quantitative ubiquitylomes from a strain deficient in proteasome substrate recruitment and a reference strain during cold response. We have observed that a large group of proteins showing increased ubiquitylation in the proteasome mutant at low temperature is comprised by reverses suppressor of Ty-phenotype 5 (Rsp5)-regulated plasma membrane proteins. Analysis of internalization and degradation of plasma membrane proteins at low temperature showed that the proteasome becomes determinant for this process, whereas, at 30 °C, the proteasome is dispensable. Moreover, our observations indicate that proteasomes have increased capacity to interact with lysine 63-polyubiquitylated proteins during low temperature in vivo. These unanticipated observations indicate that, during cold response, there is a proteolytic cellular reprogramming in which the proteasome acquires a role in the endocytic-vacuolar pathway.

SUBMITTER: Isasa M 

PROVIDER: S-EPMC4722449 | biostudies-literature | 2016 Jan

REPOSITORIES: biostudies-literature

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Cold Temperature Induces the Reprogramming of Proteolytic Pathways in Yeast.

Isasa Marta M   Suñer Clara C   Díaz Miguel M   Puig-Sàrries Pilar P   Zuin Alice A   Bichman Anne A   Gygi Steven P SP   Rebollo Elena E   Crosas Bernat B  

The Journal of biological chemistry 20151124 4


Despite much evidence of the involvement of the proteasome-ubiquitin signaling system in temperature stress response, the dynamics of the ubiquitylome during cold response has not yet been studied. Here, we have compared quantitative ubiquitylomes from a strain deficient in proteasome substrate recruitment and a reference strain during cold response. We have observed that a large group of proteins showing increased ubiquitylation in the proteasome mutant at low temperature is comprised by revers  ...[more]

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