Literature DB >> 12380681

Hsp72 expression enhances survival in adenosine triphosphate-depleted renal epithelial cells.

Y H Wang1, A A Knowlton, F H Li, S C Borkan.   

Abstract

Although prior heat stress (HS) inhibits apoptosis in adenosine phosphate (ATP)-depleted renal epithelial cells (REC), the specific stress protein(s) responsible for cytoprotection have not been identified. The present study evaluated the hypothesis that Hsp72, the major inducible member of the Hsp70 family, protects REC against ATP depletion injury. In the presence of isopropyl-beta-D-thiogalactoside (IPTG), a stable line of transfected opossum kidney cells was induced to overexpress human Hsp72 tagged with the flag epitope. Transfected cells from 2 clones that expressed Hsp72 at a level comparable with wild-type cells were subjected to transient heat stress (43 degrees C for 1 hour). To assess the cytoprotective effect of Hsp72, transfected cells were subjected to transient ATP depletion followed by recovery in the presence vs the absence of IPTG. ATP depletion resulted in nuclear chromatin condensation without cell membrane injury (ie, minimal leak of lactate dehydrogenase) and activation of caspase-3, confirming that apoptosis is the major cause of cell death. In both clones cell survival 1-3 days after ATP depletion was significantly improved in the presence of IPTG. Selective overexpression of Hsp72 reproduced nearly 60% of the protective effect on the survival afforded by prior heat stress. In transfected cells subjected to ATP depletion, Hsp72 overexpression significantly inhibited caspase activation. In native renal cells brief ATP depletion markedly induced the expression of native Hsp72, a finding identical to that observed after renal ischemia in vivo. These studies are the first to directly show that Hsp72 per se mediates acquired resistance to ischemic injury in REC.

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Year:  2002        PMID: 12380681      PMCID: PMC514811          DOI: 10.1379/1466-1268(2002)007<0137:heesia>2.0.co;2

Source DB:  PubMed          Journal:  Cell Stress Chaperones        ISSN: 1355-8145            Impact factor:   3.667


  45 in total

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Authors:  H M Beere; B B Wolf; K Cain; D D Mosser; A Mahboubi; T Kuwana; P Tailor; R I Morimoto; G M Cohen; D R Green
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2.  Growth suppression and induction of heat-shock protein-70 by 9-cis beta-carotene in cervical dysplasia-derived cells.

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Journal:  Life Sci       Date:  1997       Impact factor: 5.037

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Journal:  Physiol Rev       Date:  1992-10       Impact factor: 37.312

4.  Heat-shock response is associated with enhanced postischemic ventricular recovery.

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Authors:  A C Wagner; H Weber; L Jonas; H Nizze; M Strowski; F Fiedler; H Printz; H Steffen; B Göke
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6.  Heat stress ameliorates ATP depletion-induced sublethal injury in mouse proximal tubule cells.

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Review 8.  Mechanisms of apoptosis and its potential role in renal tubular epithelial cell injury.

Authors:  W Lieberthal; J S Levine
Journal:  Am J Physiol       Date:  1996-09

Review 9.  The 90-kDa molecular chaperone family: structure, function, and clinical applications. A comprehensive review.

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10.  Identification of a regulatory motif in Hsp70 that affects ATPase activity, substrate binding and interaction with HDJ-1.

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Journal:  EMBO J       Date:  1995-05-15       Impact factor: 11.598

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  7 in total

1.  Induction of heat shock protein 70 inhibits ischemic renal injury.

Authors:  Zhiyong Wang; Jonathan M Gall; Ramon G B Bonegio; Andrea Havasi; Clayton R Hunt; Michael Y Sherman; John H Schwartz; Steven C Borkan
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Review 2.  Hyperosmotic stress response: comparison with other cellular stresses.

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3.  Protein kinase C-α interaction with iHSP70 in mitochondria promotes recovery of mitochondrial function after injury in renal proximal tubular cells.

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Journal:  Am J Physiol Renal Physiol       Date:  2013-06-26

4.  The maximal cytoprotective function of the heat shock protein 27 is dependent on heat shock protein 70.

Authors:  R Sreedharan; M Riordan; G Thullin; S Van Why; N J Siegel; M Kashgarian
Journal:  Biochim Biophys Acta       Date:  2010-10-08

5.  Nucleophosmin, a critical Bax cofactor in ischemia-induced cell death.

Authors:  Zhiyong Wang; Jonathan M Gall; Ramon Bonegio; Andrea Havasi; Katarina Illanes; John H Schwartz; Steven C Borkan
Journal:  Mol Cell Biol       Date:  2013-03-04       Impact factor: 4.272

6.  Role of mitofusin 2 in the renal stress response.

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7.  Mice with an absent stress response are protected against ischemic renal injury.

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Journal:  Kidney Int       Date:  2014-05-07       Impact factor: 10.612

  7 in total

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