Literature DB >> 26889747

Inhibition of ice recrystallization and cryoprotective activity of wheat proteins in liver and pancreatic cells.

Mélanie Chow-Shi-Yée1, Jennie G Briard2, Mélanie Grondin1, Diana A Averill-Bates1, Robert N Ben2, François Ouellet1.   

Abstract

Efficient cryopreservation of cells at ultralow temperatures requires the use of substances that help maintain viability and metabolic functions post-thaw. We are developing new technology where plant proteins are used to substitute the commonly-used, but relatively toxic chemical dimethyl sulfoxide. Recombinant forms of four structurally diverse wheat proteins, TaIRI-2 (ice recrystallization inhibition), TaBAS1 (2-Cys peroxiredoxin), WCS120 (dehydrin), and TaENO (enolase) can efficiently cryopreserve hepatocytes and insulin-secreting INS832/13 cells. This study shows that TaIRI-2 and TaENO are internalized during the freeze-thaw process, while TaBAS1 and WCS120 remain at the extracellular level. Possible antifreeze activity of the four proteins was assessed. The "splat cooling" method for quantifying ice recrystallization inhibition activity (a property that characterizes antifreeze proteins) revealed that TaIRI-2 and TaENO are more potent than TaBAS1 and WCS120. Because of their ability to inhibit ice recrystallization, the wheat recombinant proteins TaIRI-2 and TaENO are promising candidates and could prove useful to improve cryopreservation protocols for hepatocytes and insulin-secreting cells, and possibly other cell types. TaENO does not have typical ice-binding domains, and the TargetFreeze tool did not predict an antifreeze capacity, suggesting the existence of nontypical antifreeze domains. The fact that TaBAS1 is an efficient cryoprotectant but does not show antifreeze activity indicates a different mechanism of action. The cryoprotective properties conferred by WCS120 depend on biochemical properties that remain to be determined. Overall, our results show that the proteins' efficiencies vary between cell types, and confirm that a combination of different protection mechanisms is needed to successfully cryopreserve mammalian cells.
© 2016 The Protein Society.

Entities:  

Keywords:  cryopreservation; ice recrystallization inhibition; mammalian cell; plant protein

Mesh:

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Year:  2016        PMID: 26889747      PMCID: PMC4838640          DOI: 10.1002/pro.2903

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  48 in total

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Review 2.  Current status and future prospects of toxicogenomics in drug discovery.

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Journal:  Drug Discov Today       Date:  2013-11-08       Impact factor: 7.851

Review 3.  The relevance of ice crystal formation for the cryopreservation of tissues and organs.

Authors:  David E Pegg
Journal:  Cryobiology       Date:  2010-02-14       Impact factor: 2.487

4.  TargetFreeze: Identifying Antifreeze Proteins via a Combination of Weights using Sequence Evolutionary Information and Pseudo Amino Acid Composition.

Authors:  Xue He; Ke Han; Jun Hu; Hui Yan; Jing-Yu Yang; Hong-Bin Shen; Dong-Jun Yu
Journal:  J Membr Biol       Date:  2015-06-10       Impact factor: 1.843

5.  Immunolocalization of freezing-tolerance-associated proteins in the cytoplasm and nucleoplasm of wheat crown tissues.

Authors:  M Houde; C Daniel; M Lachapelle; F Allard; S Laliberté; F Sarhan
Journal:  Plant J       Date:  1995-10       Impact factor: 6.417

Review 6.  Freezing of living cells: mechanisms and implications.

Authors:  P Mazur
Journal:  Am J Physiol       Date:  1984-09

7.  Isolation and characterization of a novel antifreeze protein from carrot (Daucus carota).

Authors:  M Smallwood; D Worrall; L Byass; L Elias; D Ashford; C J Doucet; C Holt; J Telford; P Lillford; D J Bowles
Journal:  Biochem J       Date:  1999-06-01       Impact factor: 3.857

8.  Protein denaturation during freezing and thawing in phosphate buffer systems: monomeric and tetrameric beta-galactosidase.

Authors:  K A Pikal-Cleland; N Rodríguez-Hornedo; G L Amidon; J F Carpenter
Journal:  Arch Biochem Biophys       Date:  2000-12-15       Impact factor: 4.013

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Journal:  N Engl J Med       Date:  2006-09-28       Impact factor: 91.245

10.  The importance of size and disorder in the cryoprotective effects of dehydrins.

Authors:  Stephanie L Hughes; Verena Schart; Janet Malcolmson; Kaley A Hogarth; David M Martynowicz; Erik Tralman-Baker; Shruti N Patel; Steffen P Graether
Journal:  Plant Physiol       Date:  2013-09-18       Impact factor: 8.340

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  2 in total

1.  Presence of a basic secretory protein in xylem sap and shoots of poplar in winter and its physicochemical activities against winter environmental conditions.

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Journal:  J Plant Res       Date:  2019-07-09       Impact factor: 2.629

2.  NANOPARTICLE-MEDIATED DELIVERY OF CRYOPROTECTANTS FOR CRYOPRESERVATION.

Authors:  Samantha Stewart; Alyssa Arminan; Xiaoming He
Journal:  Cryo Letters       Date:  2020 Nov-Dec       Impact factor: 0.892

  2 in total

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