The dynamics and role of sphingolipids in eukaryotic organisms upon thermal adaptation

Prog Lipid Res. 2020 Nov:80:101063. doi: 10.1016/j.plipres.2020.101063. Epub 2020 Sep 2.

Abstract

All living beings have an optimal temperature for growth and survival. With the advancement of global warming, the search for understanding adaptive processes to climate changes has gained prominence. In this context, all living beings monitor the external temperature and develop adaptive responses to thermal variations. These responses ultimately change the functioning of the cell and affect the most diverse structures and processes. One of the first structures to detect thermal variations is the plasma membrane, whose constitution allows triggering of intracellular signals that assist in the response to temperature stress. Although studies on this topic have been conducted, the underlying mechanisms of recognizing thermal changes and modifying cellular functioning to adapt to this condition are not fully understood. Recently, many reports have indicated the participation of sphingolipids (SLs), major components of the plasma membrane, in the regulation of the thermal stress response. SLs can structurally reinforce the membrane or/and send signals intracellularly to control numerous cellular processes, such as apoptosis, cytoskeleton polarization, cell cycle arresting and fungal virulence. In this review, we discuss how SLs synthesis changes during both heat and cold stresses, focusing on fungi, plants, animals and human cells. The role of lysophospholipids is also discussed.

Keywords: Ceramide; Cold stress; Fungal virulence; Heat shock; Heat shock protein; Lysophospholipid; Sphingolipid.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.
  • Review

MeSH terms

  • Adaptation, Physiological / physiology*
  • Animals
  • Cold-Shock Response / physiology
  • Eukaryota / physiology*
  • Fungi / physiology
  • Heat-Shock Response / physiology
  • Humans
  • Plant Physiological Phenomena
  • Sphingolipids / metabolism
  • Sphingolipids / physiology*
  • Temperature

Substances

  • Sphingolipids