Literature DB >> 12506142

Hsp27 associates with actin and limits injury in energy depleted renal epithelia.

Scott K Van Why1, Andrea S Mann, Thomas Ardito, Gunilla Thulin, Sarah Ferris, Megan A Macleod, Michael Kashgarian, Norman J Siegel.   

Abstract

The purpose of the study was to determine whether Hsp27 interacts with actin and could protect against selected manifestations of injury from energy depletion in renal epithelia. LLC-PK1 cells were stably transfected to overexpress human Hsp27 tagged with green fluorescence protein (GFP). Transfected expression of the labeled Hsp27 did not reduce endogenous Hsp25 levels in the cells compared with either nontransfected cells or cells transfected with GFP alone used as the transfectant control (G). By fluorescence energy transfer (FRET) between GFP-tagged Hsp27 and rhodamine phalloidin-decorated actin, minimal interaction was found in uninjured control cells. In ATP-depleted cells, Hsp27 was associated closely with F-actin at lateral cell boundaries and with aggregated actin within the cell body. Less Hsp27 interaction with actin was found during recovery; but when adjusted for total phalloidin fluorescence, FRET between Hsp27 and F-actin did not change between 2-h ATP depletion and 4-h recovery. Where Hsp27 association with actin persisted during recovery, it was principally with the residual aggregates of actin in the cell body. Detachment of Na,K-ATPase from the cytoskeleton at 2-h ATP depletion was significantly less in Hsp27 cells compared with transfectant control G cells but not at 4-h ATP depletion. Detachment of ezrin from the cytoskeleton during ATP depletion was nearly complete and was not prevented in the Hsp27 cells. Protection of the Hsp27 cells was not attributable to preservation of cellular ATP levels. Hsp27 appears to have specific actions in renal epithelia subjected to energy depletion, including interacting with actin to preserve architecture in specific intracellular domains.

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Year:  2003        PMID: 12506142     DOI: 10.1097/01.asn.0000038687.24289.83

Source DB:  PubMed          Journal:  J Am Soc Nephrol        ISSN: 1046-6673            Impact factor:   10.121


  21 in total

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Review 2.  Heat shock proteins in the kidney.

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Journal:  Pediatr Nephrol       Date:  2016-02-25       Impact factor: 3.714

3.  Selective renal overexpression of human heat shock protein 27 reduces renal ischemia-reperfusion injury in mice.

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Journal:  Am J Physiol Renal Physiol       Date:  2010-05-19

Review 4.  Structural and functional properties of proteins interacting with small heat shock proteins.

Authors:  Afrooz Dabbaghizadeh; Robert M Tanguay
Journal:  Cell Stress Chaperones       Date:  2020-04-20       Impact factor: 3.667

5.  Regional differences in colonic mucosa-associated microbiota determine the physiological expression of host heat shock proteins.

Authors:  Shien Hu; Yunwei Wang; Lev Lichtenstein; Yun Tao; Mark W Musch; Bana Jabri; Dionysios Antonopoulos; Erika C Claud; Eugene B Chang
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Review 6.  Pathophysiology of acute kidney injury.

Authors:  David P Basile; Melissa D Anderson; Timothy A Sutton
Journal:  Compr Physiol       Date:  2012-04       Impact factor: 9.090

7.  Ezrin functionality and hypothermic preservation injury in LLC-PK1 cells.

Authors:  Tao Tian; Susanne L Lindell; Melody Lam; Martin J Mangino
Journal:  Cryobiology       Date:  2012-04-23       Impact factor: 2.487

8.  Curcumin activates the p38MPAK-HSP25 pathway in vitro but fails to attenuate diabetic nephropathy in DBA2J mice despite urinary clearance documented by HPLC.

Authors:  Jun Ma; Lynetta Phillips; Ying Wang; Tiane Dai; Janine LaPage; Rama Natarajan; Sharon G Adler
Journal:  BMC Complement Altern Med       Date:  2010-11-12       Impact factor: 3.659

9.  Thiolutin inhibits endothelial cell adhesion by perturbing Hsp27 interactions with components of the actin and intermediate filament cytoskeleton.

Authors:  Yifeng Jia; Shiaw-Lin Wu; Jeff S Isenberg; Shujia Dai; John M Sipes; Lyndsay Field; Bixi Zeng; Russell W Bandle; Lisa A Ridnour; David A Wink; Ramani Ramchandran; Barry L Karger; David D Roberts
Journal:  Cell Stress Chaperones       Date:  2009-07-05       Impact factor: 3.667

10.  20-HETE-mediated cytotoxicity and apoptosis in ischemic kidney epithelial cells.

Authors:  Vani Nilakantan; Cheryl Maenpaa; Guangfu Jia; Richard J Roman; Frank Park
Journal:  Am J Physiol Renal Physiol       Date:  2008-01-02
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