Title of article
Identification of Long-Lived Proteins Reveals Exceptional Stability of Essential Cellular Structures
Author/Authors
Brandon H. Toyama، نويسنده , , Jeffrey N. Savas، نويسنده , , Sung Kyu Park، نويسنده , , Michael S. Harris، نويسنده , , Nicholas T. Ingolia، نويسنده , , John R. Yates III، نويسنده , , Martin W. Hetzer، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2013
Pages
12
From page
971
To page
982
Abstract
Intracellular proteins with long lifespans have recently been linked to age-dependent defects, ranging from decreased fertility to the functional decline of neurons. Why long-lived proteins exist in metabolically active cellular environments and how they are maintained over time remains poorly understood. Here, we provide a system-wide identification of proteins with exceptional lifespans in the rat brain. These proteins are inefficiently replenished despite being translated robustly throughout adulthood. Using nucleoporins as a paradigm for long-term protein persistence, we found that nuclear pore complexes (NPCs) are maintained over a cell’s life through slow but finite exchange of even its most stable subcomplexes. This maintenance is limited, however, as some nucleoporin levels decrease during aging, providing a rationale for the previously observed age-dependent deterioration of NPC function. Our identification of a long-lived proteome reveals cellular components that are at increased risk for damage accumulation, linking long-term protein persistence to the cellular aging process.
Journal title
CELL
Serial Year
2013
Journal title
CELL
Record number
1021869
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