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脂质对血管活性肠肽的稳定作用。

Stabilization of vasoactive intestinal peptide by lipids.

作者信息

Gololobov G, Noda Y, Sherman S, Rubinstein I, Baranowska-Kortylewicz J, Paul S

机构信息

Department of Anesthesiology, University of Nebraska Medical Center, Omaha, USA.

出版信息

J Pharmacol Exp Ther. 1998 May;285(2):753-8.

PMID:9580623
Abstract

An anionic phospholipid, phosphatidylglycerol (PG), induced vasoactive intestinal peptide (VIP) to adopt a helical conformation, determined by circular dichroism studies. PG inhibited the trypsin-catalyzed, antibody-catalyzed and uncatalyzed cleavage of VIP, measured by radiometric and HPLC methods. Phosphatidylcholine, a neutral lipid, did not alter the circular dichroism spectra of VIP, and it was without detectable effect on the rates of VIP cleavage. Trypsin-catalyzed cleavage of Boc-Ile-Glu-Arg-methylcoumarinamide, a substrate unrelated in sequence to VIP, proceeded at equivalent rates in the absence and presence of PG, which suggests that the phospholipid did not exert a nonspecific inhibitory effect on the enzyme. Study of the kinetics of antibody-catalyzed VIP cleavage indicated that the inhibition by PG was due to decreased affinity for VIP, suggested by observations of increased K(m) values and unaltered Vmax values. Incorporation of VIP in the liposomes and the liposomal surface permitted maintenance of the peptide in essentially undegraded form at 37 degrees C for 8 days. The longevity of liposomal VIP administered i.v. to mice was increased by about 5-fold compared with aqueous VIP. These observations indicate that certain phospholipids and liposomes can be applied to circumvent the rapid loss of VIP in vitro and in vivo due to degradative processes.

摘要

通过圆二色性研究确定,一种阴离子磷脂——磷脂酰甘油(PG)可诱导血管活性肠肽(VIP)呈现螺旋构象。PG抑制了胰蛋白酶催化、抗体催化以及无催化作用下的VIP裂解,通过放射性测定法和高效液相色谱法进行测量。中性脂质磷脂酰胆碱并未改变VIP的圆二色光谱,并且对VIP裂解速率没有可检测到的影响。胰蛋白酶催化的与VIP序列无关的底物Boc-Ile-Glu-Arg-甲基香豆素酰胺的裂解,在不存在和存在PG的情况下以相同速率进行,这表明该磷脂对酶没有非特异性抑制作用。对抗体催化的VIP裂解动力学研究表明,PG的抑制作用是由于对VIP的亲和力降低,这通过观察到的K(m)值增加和Vmax值不变得以表明。将VIP包裹于脂质体及其表面可使该肽在37℃下基本以未降解形式维持8天。静脉注射给小鼠的脂质体VIP的寿命比水溶性VIP增加了约5倍。这些观察结果表明,某些磷脂和脂质体可用于规避由于降解过程导致的VIP在体外和体内的快速损失。

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