Biology

Chaperone protein keeps cellular traffic controller stable during yeast cell division

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YeastCdc42Chaperone protein

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This is a correction notice for a previously published article in PLOS Biology regarding the protein Cdc42 and its interaction with the chaperone protein Ydj1 in yeast. The original research examined how Cdc42's interaction with Ydj1 affects protein stability and distribution during asymmetric cell division and the aging process in yeast cells. As a correction notice, this document addresses errors or clarifications needed in the original publication rather than presenting new research findings.


Understanding protein stability and partitioning during cell division is fundamental to comprehending how cells age and maintain quality control. This research on yeast models provides insights into cellular mechanisms that may be conserved across species, potentially informing studies on aging and age-related diseases in higher organisms.


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Yeast Concept coming soon Cdc42 Concept coming soon Chaperone protein Concept coming soon

by The PLOS Biology Staff

Source: Correction: Cdc42 interacts with chaperone Ydj1 to enhance its stability and partitioning during asymmetric cell division and aging in yeast