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测定脂肪酸转运的限速步骤。

Determination of the Rate-Limiting Step in Fatty Acid Transport.

机构信息

Department of Chemistry , University of Utah , 315 South 1400 East, RM 2020 , Salt Lake City , Utah 84112 , United States.

出版信息

J Phys Chem B. 2019 Aug 22;123(33):7157-7168. doi: 10.1021/acs.jpcb.9b05162. Epub 2019 Aug 12.

Abstract

The generally accepted model of free fatty acid (FA) transport through cellular membranes occurs in three steps, adsorption of the FA onto the membrane, translocation across the membrane ("flip-flop"), and subsequent desorption of the FA into the cytosol. There still exists some dispute as to the identity of the rate-limiting step of FA transport. In the present study, sum-frequency vibrational spectroscopy (SFVS) was used to directly measure the rate of stearic acid (SA) flip-flop in planar supported lipid bilayers (PSLBs) comprised of 1,2-distearoyl--glycero-3-phosphocholine (DSPC). The impact of SA on the physical properties of binary mixtures of SA and DSPC was investigated via Π- isotherms from which the excess free energies of mixing and compression moduli were calculated. The manner in which these physical changes influenced the rates of SA and DSPC flip-flop was subsequently examined using SFVS. The rates of SA and DSPC flip-flop revealed that SA flip-flops independently of DSPC and on much faster time scales than its phospholipid counterpart. SFVS was also used to probe the rate of protein-unassisted SA desorption from hybrid supported lipid bilayers (HSLBs), allowing for the first decoupled measurement of the rates of desorption and flip-flop. These results provide strong evidence for desorption being the rate-limiting step in FA transport through the membrane in the absence of proteins.

摘要

游离脂肪酸(FA)穿过细胞膜的转运通常分为三个步骤:FA 吸附到膜上、穿过膜的“翻转”以及随后 FA 解吸到细胞质中。FA 转运的限速步骤仍然存在一些争议。在本研究中,我们使用和频振动光谱(SFVS)直接测量由 1,2-二硬脂酰基-sn-甘油-3-磷酸胆碱(DSPC)组成的平面支撑脂质双层(PSLB)中硬脂酸(SA)翻转的速率。通过 Π-等温线研究了 SA 对 SA 和 DSPC 二元混合物物理性质的影响,从这些等温线中计算出混合过剩自由能和压缩模量。随后使用 SFVS 研究了这些物理变化如何影响 SA 和 DSPC 翻转的速率。SA 和 DSPC 翻转的速率表明,SA 独立于 DSPC 翻转,并且比其磷脂对应物快得多。SFVS 还用于探测无蛋白时从混合支撑脂质双层(HSLB)中辅助 SA 解吸的速率,这使得第一次可以解吸和翻转的速率进行解耦测量。这些结果为在没有蛋白质的情况下 FA 通过膜转运中解吸是限速步骤提供了有力证据。

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