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表面活性肽可刺激分离细胞摄取磷脂酰胆碱。

Surfactant peptides stimulate uptake of phosphatidylcholine by isolated cells.

作者信息

Rice W R, Sarin V K, Fox J L, Baatz J, Wert S, Whitsett J A

机构信息

University of Cincinnati College of Medicine, Department of Pediatrics, OH 45267-0541.

出版信息

Biochim Biophys Acta. 1989 Nov 28;1006(2):237-45. doi: 10.1016/0005-2760(89)90202-6.

Abstract

To determine whether small hydrophobic surfactant peptides (SP-B and SP-C) participate in recycling of pulmonary surfactant phospholipid, we determined the effect of these peptides on transfer of 3H- or 14C-labelled phosphatidylcholine from liposomes to isolated rat alveolar Type II cells and Chinese hamster lung fibroblasts. Both natural and synthetic SP-B and SP-C markedly stimulated phosphatidylcholine transfer to alveolar Type II cells and Chinese hamster lung fibroblasts in a dose- and time-dependent fashion. Effects of the peptides on phospholipid uptake were dose-dependent, but not saturable and occurred at both 4 and 37 degrees C. Uptake of labelled phospholipid into a lamellar body fraction prepared from Type II cells was augmented in the presence of SP-B. Neither SP-B nor SP-C augmented exchange of labelled plasma membrane phosphatidylcholine from isolated Type II cells or enhanced the release of surfactant phospholipid when compared to liposomes without SP-B or SP-C. Addition of native bovine SP-B and SP-C to the phospholipid vesicles perturbed the size and structure of the vesicles as determined by electron microscopy. To determine the structural elements responsible for the effect of the peptides on phospholipid uptake, fragments of SP-B were synthesized by solid-phase protein synthesis and their effects on phospholipid uptake assessed in Type II epithelial cells. SP-B (1-60) stimulated phospholipid uptake 7-fold. A smaller fragment of SP-B (15-60) was less active and the SP-B peptide (40-60) failed to augment phospholipid uptake significantly. Like SP-B and SP-C, surfactant-associated protein (SP-A) enhanced phospholipid uptake by Type II cells. However, SP-A failed to significantly stimulate phosphatidylcholine uptake by Chinese hamster lung fibroblasts. These studies demonstrate the independent activity of surfactant proteins SP-B and SP-C on the uptake of phospholipid by Type II epithelial cells and Chinese hamster lung fibroblasts in vitro.

摘要

为了确定小的疏水性表面活性剂肽(表面活性蛋白B和表面活性蛋白C)是否参与肺表面活性物质磷脂的循环利用,我们测定了这些肽对3H或14C标记的磷脂酰胆碱从脂质体转移至分离的大鼠肺泡II型细胞和中国仓鼠肺成纤维细胞的影响。天然和合成的表面活性蛋白B和表面活性蛋白C均以剂量和时间依赖性方式显著刺激磷脂酰胆碱向肺泡II型细胞和中国仓鼠肺成纤维细胞的转移。这些肽对磷脂摄取的作用呈剂量依赖性,但不饱和,且在4℃和37℃时均会发生。在表面活性蛋白B存在的情况下,从II型细胞制备的板层小体部分中标记磷脂的摄取增加。与不含表面活性蛋白B或表面活性蛋白C的脂质体相比,表面活性蛋白B和表面活性蛋白C均未增强分离的II型细胞中标记的质膜磷脂酰胆碱的交换,也未增强表面活性物质磷脂的释放。通过电子显微镜测定,向磷脂囊泡中添加天然牛表面活性蛋白B和表面活性蛋白C会扰乱囊泡的大小和结构。为了确定负责肽对磷脂摄取作用的结构元件,通过固相蛋白质合成法合成了表面活性蛋白B的片段,并在II型上皮细胞中评估了它们对磷脂摄取的影响。表面活性蛋白B(1-60)刺激磷脂摄取增加7倍。表面活性蛋白B的一个较小片段(15-60)活性较低,而表面活性蛋白B肽(40-60)未能显著增强磷脂摄取。与表面活性蛋白B和表面活性蛋白C一样,表面活性物质相关蛋白(表面活性蛋白A)增强了II型细胞对磷脂的摄取。然而,表面活性蛋白A未能显著刺激中国仓鼠肺成纤维细胞对磷脂酰胆碱的摄取。这些研究证明了表面活性物质蛋白表面活性蛋白B和表面活性蛋白C在体外对II型上皮细胞和中国仓鼠肺成纤维细胞摄取磷脂的独立作用。

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