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Hong Liu

Researcher at W. Alton Jones Cell Science Center

Publications -  7
Citations -  849

Hong Liu is an academic researcher from W. Alton Jones Cell Science Center. The author has contributed to research in topics: Dithiothreitol & Hsp70. The author has an hindex of 7, co-authored 7 publications receiving 839 citations.

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Endoplasmic Reticulum Chaperones GRP78 and Calreticulin Prevent Oxidative Stress, Ca2+ Disturbances, and Cell Death in Renal Epithelial Cells

TL;DR: The data support a model in which induction of ER stress proteins prevents disturbances of intracellular Ca2+ homeostasis, thus uncoupling toxicant exposure from oxidative stress and cell death, and support the role of ER chaperones of the GRP family in tolerance.
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Endoplasmic Reticulum Stress Proteins Block Oxidant-induced Ca2+ Increases and Cell Death

TL;DR: Ca2+ plays an important role in TBHP-induced cell death in renal epithelial cells, and the ER is an important regulator of cellular Ca2+ homeostasis during oxidative stress.
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Activation of Heat Shock Factor by Alkylating Agents Is Triggered by Glutathione Depletion and Oxidation of Protein Thiols

TL;DR: Alkylation of proteins is insufficient to activate hsp70 transcription and DNA binding of HSF1, however, cellular thiol-disulfide redox status and formation of disulfide linked aggregates of cellular proteins are linked to HSF 1 activation and hsp 70 transcriptional activation.
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Reduction of trans-4,5-Dihydroxy-1,2-dithiane by Cellular Oxidoreductases Activates gadd153/chop andgrp78 Transcription and Induces Cellular Tolerance in Kidney Epithelial Cells

TL;DR: Activation of stress genes and induction of cellular tolerance by DTTox is mediated by a novel mechanism involving cellular oxidoreductases.
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The molecular response to reductive stress in LLC-PK1 renal epithelial cells: coordinate transcriptional regulation of gadd153 and grp78 genes by thiols

TL;DR: Both grp78 and gadd153 are members of a gene battery which is responsive to reductive stress, and there appears to be considerable, but not complete, overlap between the upstream signaling pathways for activation of both genes.