European Regional Development Fund(GINOP-2.3.2-15-2016-00020) Támogató: GINOP
A gyógyszerkutatás újabb irányai: peptid-fehérje kölcsönhatások a magasabb rendű fehérjeszerveződ...(GINOP-2.3.2-15-2016-00044)
Támogató: GINOP
(K132906)
(2019 -2.1.11-TÉT-201900059)
NKFIH(K119417)
(GINOP-2.3.2-15-2016-00015) Támogató: GINOP
(HunProEx 2018-1.2.1-NKP-2018-00005)
Új Nemzeti Kiválósági Program(ÚNKP-19-3-III-DE-92) Támogató: Innovációs és Technológiai
Minisztérium
(NTP-NFTÖ-20-B-0115)
(Lendület) Támogató: MTA
Szakterületek:
Biológiai tudományok
Although the largely positive intramembrane dipole potential (DP) may substantially
influence the function of transmembrane proteins, its investigation is deeply hampered
by the lack of measurement techniques suitable for high-throughput examination of
living cells. Here, we describe a novel emission ratiometric flow cytometry method
based on F66, a 3-hydroxiflavon derivative, and demonstrate that 6-ketocholestanol,
cholesterol and 7-dehydrocholesterol, saturated stearic acid (SA) and omega-6 gamma-linolenic
acid (GLA) increase, while omega-3 alpha-linolenic acid (ALA) decreases the DP. These
changes do not correlate with alterations in cell viability or membrane fluidity.
Pretreatment with ALA counteracts, while SA or GLA enhances cholesterol-induced DP
elevations. Furthermore, ALA (but not SA or GLA) increases endo-lysosomal escape of
penetratin, a cell-penetrating peptide. In summary, we have developed a novel method
to measure DP in large quantities of individual living cells and propose ALA as a
physiological DP lowering agent facilitating cytoplasmic entry of penetratin.