» Articles » PMID: 11438283

The Effect of Arbutin on Membrane Integrity During Drying is Mediated by Stabilization of the Lamellar Phase in the Presence of Nonbilayer-forming Lipids

Overview
Specialty Biochemistry
Date 2001 Jul 5
PMID 11438283
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

Arbutin (4-hydroxyphenyl-beta-glucopyranoside) is a solute accumulated to high concentrations in drought and frost resistant plants. Arbutin can inhibit membrane lysis, both free radical-mediated and enzymatic in nature, and it has been suggested that arbutin might contribute to membrane stabilization in these plants. However, we found that arbutin destabilized phosphatidylcholine vesicles during drying and rehydration, which appears to be inconsistent with the proposed protective function of arbutin for membranes. We also found, however, that arbutin stabilizes membranes containing nonbilayer-forming lipids during freezing. We now report that, in liposomes containing the nonbilayer-forming lipids monogalactosyldiacylglycerol (MGDG) or phosphatidylethanolamine (PE), arbutin served a protective function during drying, as measured by retention of carboxyfluorescein (CF) and extent of vesicle fusion. In hydrated samples containing these lipids, arbutin stabilized the lamellar liquid crystalline phase. Therefore, the interaction between arbutin and lipid membranes and the resulting effects on membrane stability depend, in a complex manner, on the lipid composition of the membrane.

Citing Articles

GROWTH REGULATING FACTOR 7-mediated arbutin metabolism enhances rice salt tolerance.

Chen Y, Dan Z, Li S Plant Cell. 2024; 36(8):2834-2850.

PMID: 38701348 PMC: 11289636. DOI: 10.1093/plcell/koae140.


Taking stress with much more than a pinch of salt: osGRF7 regulates salinity resistance in rice through arbutin biosynthesis.

Lorenzo C Plant Cell. 2024; 36(8):2753-2754.

PMID: 38700166 PMC: 11289624. DOI: 10.1093/plcell/koae139.


Significantly Enhanced Synthesis of Aromatic Esters of Arbutin Catalyzed by Immobilized Lipase in Co-solvent Systems.

Yang R, Nie Z, Xu N, Zhao X, Wang Z, Luo H Front Bioeng Biotechnol. 2020; 8:273.

PMID: 32363180 PMC: 7180213. DOI: 10.3389/fbioe.2020.00273.


Metabolite signatures of grasspea suspension-cultured cells illustrate the complexity of dehydration response.

Rathi D, Pareek A, Zhang T, Pang Q, Chen S, Chakraborty S Planta. 2019; 250(3):857-871.

PMID: 31203447 DOI: 10.1007/s00425-019-03211-5.


Metabolome and Lipidome Profiles of × Twig Tissues During Annual Growth Show Phospholipid-Linked Storage and Mobilization of C, N, and S.

Watanabe M, Netzer F, Tohge T, Orf I, Brotman Y, Dubbert D Front Plant Sci. 2018; 9:1292.

PMID: 30233628 PMC: 6133996. DOI: 10.3389/fpls.2018.01292.