首页> 外文期刊>Biochemistry >Potassium flux through gramicidin ion channels is augmented in vesicles comprised of plasmenylcholine: correlations between gramicidin conformation and function in chemically distinct host bilayer matrices.
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Potassium flux through gramicidin ion channels is augmented in vesicles comprised of plasmenylcholine: correlations between gramicidin conformation and function in chemically distinct host bilayer matrices.

机译:通过短杆菌肽离子通道的钾通量在由质体胆碱组成的囊泡中增加:在化学上不同的宿主双层基质中,短杆菌肽构象与功能之间的相关性。

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摘要

The functional role of distinct phospholipid subclasses and molecular species in modulating gramicidin-mediated K+ flux was characterized through quantification of changes in the fluorescence intensity of ion specific fluorescent probes encapsulated inside vesicles comprised of individual molecular species of plasmenylcholine and phosphatidylcholine. The rate constant of gramicidin-mediated K+ ion flux across bilayers comprised of 1-O-(Z)-hexadec-1'-enyl-2-octadec-9'-enoyl-sn-glycero-3-p hos phocholine (plasmenylcholine) was 18.9 +/- 1.7 s-1, while that present across bilayers comprised of 1-hexadecanoyl-2-octadec-9'-enoyl-sn-glycero-3-phosphocholine (phosphatidylcholine) was 12.3 +/- 1.5 s-1. The observed changes were not due to alterations in the nature of the sn-2 aliphatic chain or the net surface charge present at the membrane interface and were unaltered by the addition of several amphiphilic agents (including charged amphiphiles), suggesting that the observed alterations specifically reflect changes in channel function which result from the covalent alteration of host phospholipid in the proximal portion of the sn-1 aliphatic chain (i.e., phospholipid subclass-specific alterations). Addition of cholesterol to bilayer matrices comprised of plasmenylcholine resulted in dose-dependent attenuation of the rate of gramicidin-mediated K+ flux, but did not alter the rate of gramicidin-mediated K+ flux in membranes comprised of phosphatidylcholine. Gramicidin ion channels experience distinct environments in membranes comprised of phosphatidylcholine and plasmenylcholine host lipids demonstrated by both the different fluorescence anisotropies of endogenous tryptophan residues and the different C=O stretching frequencies of intramonomer carbonyls in gramicidin incorporated into these two choline glycerophospholipid subclasses.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:通过量化包裹在囊泡中的离子特异性荧光探针的荧光强度变化,来表征独特的磷脂亚类和分子物质在调节短杆菌肽介导的K +通量中的功能性作用,囊泡由质体胆碱和磷脂酰胆碱的各个分子物质组成。短杆菌肽介导的K +离子通量的速率常数跨由1-O-(Z)-hexadec-1'-enyl-2-octadec-9'-enoyl-sn-glycero-3-pho phophopholine(plasmenylcholine)组成的双层为18.9 +/- 1.7 s-1,而存在于由1-十六烷酰基-2-十八烷基-9'-烯酰基-sn-甘油-3-磷酸胆碱(磷脂酰胆碱)组成的双层中的磷脂酰胆碱为12.3 +/- 1.5 s-1。观察到的变化不是由于sn-2脂族链的性质改变或膜界面处存在的净表面电荷所致,并且未因添加几种两亲剂(包括带电荷的两亲物)而改变,这表明观察到的改变是特定的反映了通道功能的变化,该变化是由sn-1脂肪族链近端部分中的宿主磷脂的共价改变引起的(即,磷脂亚类特异性改变)。在由血浆胆碱组成的双层基质中添加胆固醇会导致剂量依赖性的短杆菌肽介导的K +通量的速率降低,但不会改变短杆菌肽介导的由磷脂酰胆碱组成的膜的速率。 Gramicidin离子通道在由磷脂酰胆碱和质体胆碱宿主脂质组成的膜中经历不同的环境,这既通过内源性色氨酸残基的不同荧光各向异性和结合在这两种胆碱甘油磷脂亚类中的短杆菌肽中的内聚单体羰基的C = O拉伸频率不同来证明。 250字)

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