Thermal sensitivity of membrane fluidity and integrity in hearts of Antarctic fishes that vary in expression of hemoglobin and myoglobin


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Abstract: Antarctic notothenioids are noted for extreme stenothermy, yet underpinnings of their thermal limits are not fully understood. We hypothesized that properties of ventricular membranes could explain previously observed differences among notothenioids in temperature onset of cardiac arrhythmias and persistent asystole. Microsomes were prepared using ventricles from six species of notothenioids, including four species from the hemoglobin-less (Hb-) family Channichthyidae (icefishes), which also differentially express cardiac myoglobin (Mb), and two species from the (Hb+) Nototheniidae. We determined membrane fluidity and structural integrity by quantifying fluorescence depolarization of 1,6-diphenyl-1,3,5-hexatriene (DPH) and leakage of 5(6)-carboxyfluorescein, respectively, over a temperature range from ambient (0 °C) to 20 °C. Compositions of membrane phospholipids and cholesterol contents were also quantified. Membranes from all four species of icefishes exhibited greater fluidity than membranes from the red-blooded species N. coriiceps. Thermal sensitivity of fluidity did not vary among species. The greatest thermal sensitivity to leakage occurred between 0 and 5 °C for all species, while membranes from the icefish, Chaenocephalus aceratus (Hb-/Mb-) displayed leakage that was nearly 1.5-fold greater than leakage in N. coriiceps (Hb+/Mb+). Contents of phosphatidylethanolamine (PE) were approximately 1.5-fold greater in icefishes than in red-blooded fishes, and phospholipids had a higher degree of unsaturation in icefishes than in Hb + notothenioids. Cholesterol contents were lowest in Champsocephalus gunnari (Hb-/Mb-) and highest in the two Hb+/Mb + species, G. gibberifrons and N. coriiceps. Our results reveal marked differences in membrane properties and indicate a breach in membrane fluidity and structural integrity at a lower temperature in icefishes than in red-blooded notothenioids.
Citation
Title  Thermal sensitivity of membrane fluidity and integrity in hearts of Antarctic fishes that vary in expression of hemoglobin and myoglobin
publication date 2020-12-24
released date 2020-12-24
cited responsible party - author
individual Name  Crockett, Elizabeth
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Postal Address:
electronic Mail Address: crockett@ohio.edu
cited responsible party - author
individual Name  Evans, Elizabeth
No contact information provided.
cited responsible party - author
individual Name  Farnoud, Amir
No contact information provided.
cited responsible party - author
individual Name  O'Brien, Kristin
organisation Name  University of Alaska, Fairbanks, AK, 99775, US
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electronic Mail Address: kmobrien@alaska.edu
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URL: http://orcid.org/ORCID:0000-0002-3311-0690
protocol  ORCID
cited responsible party - publisher
organisation Name  U.S. Antarctic Program (USAP) Data Center
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Resource language:   eng
Resource progress code:   Complete
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Creative Commons Attribution Only v4.0 Generic [CC BY 4.0]
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Creative Commons Attribution Only v4.0 Generic [CC BY 4.0]
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Classification  unclassified
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Format version  1
Resource extent
Extent description
Antarctic Peninsula
Credits:
funderName:NSF:GEO:PLR:Antarctic Organisms and Ecosystems awardNumber:1341602 awardTitle:Collaborative Research: The Physiological and Biochemical Underpinnings of Thermal Tolerance in Antarctic Notothenioid Fishes
Credits:
funderName:NSF:GEO:PLR:Antarctic Organisms and Ecosystems awardNumber:1341663 awardTitle:Collaborative Research: The Physiological and Biochemical Underpinnings of Thermal Tolerance in Antarctic Notothenioid Fishes
point of contact - pointOfContact
individual Name  Crockett, Elizabeth
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URL: https://www.usap-dc.org/view/dataset/601414
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Metadata data stamp:  2021-01-05T20:08:09Z
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notes:  This metadata record was generated by an xslt transformation from a DataCite metadata record; The transform was created by Damian Ulbricht and Stephen M. Richard. 2017-11-15 these records include new IEDA keywords for geoportal facets Run on 2021-01-05T20:08:09Z
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organisation Name  Interdisciplinary Earth Data Alliance
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electronic Mail Address: web@usap-dc.org
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URL: https://www.usap-dc.org/static/imgs/header/usaplogo.png
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Metadata language   eng
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Metadata standard for this record:  ISO 19139 Geographic Information - Metadata - Implementation Specification
standard version:  2007
Metadata record identifier:  urn:ieda:metadata:Thermal-sensitivity-of-membrane-fluidity-and-integrity-in-hearts-of-Antarctic-fishes-that-vary-in-expression-of-hemoglobin-and-myoglobin
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