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Biology subjects

Audas, T. E.

Publications and source records attributed to Audas, T. E..

2 recordsLinked to original sources

PI3K/AKT Signaling Mediates Stress-Inducible Amyloid Aggregation Through c-myc

In response to environmental stress, eukaryotic cells reversibly form functional amyloid aggregates, called amyloid bodies (A-bodies). While these solid-like biomolecular condensates share many biophysical characteristics with pathological amyloids, A-body are non-toxic, and induce a protective state of cellular dormancy. As a recently identified structure, the modulators of A-body biogenesis remain uncharacterized, with the seeding noncoding RNA being the only known regulatory factor. Here, we use an image-based high-throughput screen to identify candidate pathways regulating A-body biogenesis. Our data demonstrates that the PI3K signaling axis meditates A-body formation during heat shock, by activating AKT and repressing GSK3-mediated degradation of c-myc. This enhances c-myc binding to regulatory elements of the seeding noncoding RNA, upregulating the transcripts that nucleate A-body formation. Identifying a link between PI3K signaling, c-myc, and physiological amyloid aggregates, extends the range of activity for these well-established regulators, while providing insight into cellular components whose dysregulation could underly amyloidogenic disorders.

cell biology↗

A CREBZF/Zhangfei isoform activates CHOP during prolonged cellular stress

The basic leucine zipper transcription factor CREBZF (Zhangfei or ZF) was identified through its interaction with Herpes Simplex Virus-1 related cellular protein HCF-1. CREBZF has been implicated in cellular stress responses through its interaction with other proteins, such as CREB3/Luman and ATF4. Here we investigated the production of four CREBZF isoforms, which arise from translational initiation of a downstream AUG at codon 83, and mRNA alternative splicing that adds an IFFFR pentapeptidyl tail to the C-terminus. We found that in addition to transcriptional activation, the short-tailed CREBZF (stZF) isoform was specifically induced by prolonged ER stress treatment. This stZF isoform is a potent transcriptional activator of the pro-apoptotic protein CHOP. Overexpression of stZF activates transcription of CHOP through a CCAAT enhancer binding protein (C/EBP)-ATF site, and promotes apoptosis. We propose that 1) CREBZF is a key component of the Integrated Stress Response (ISR); 2) stZF is essential for the role of CREBZF in inducing CHOP and promoting cell death upon prolonged cellular stress.

molecular biology↗