Bates S R, Fisher A B
Institute for Environmental Medicine, University of Pennsylvania, School of Medicine, Philadelphia 19104.
Am J Physiol. 1993 Nov;265(5 Pt 1):L448-55. doi: 10.1152/ajplung.1993.265.5.L448.
Surfactant protein B (SP-B) metabolism was studied in primary cultures of alveolar type II cells. Iodinated SP-B reconstituted with surfactant was incorporated rapidly into lung pneumocytes and degraded to trichloroacetic acid (TCA)-soluble products after a lag period of 1 h. Cellular degradation of SP-B occurred whether or not phospholipid liposomes or surfactant was added to the phospholipid-poor SP-B. Uptake and degradation of SP-B at 37 degrees C showed a linear increase up to 3 micrograms SP-B/ml after which the slope of the curve became less steep with increasing concentrations of SP-B in the media. After 4 h of incubation with SP-B, 35% of the SP-B processed was recovered as degradation products. Ninety-six percent of the degradation products were in the media and only 4% were recovered in the cell. The bulk of the breakdown of SP-B occurred inside the type II cells since degradation did not occur at 4 degrees C, showed a 1-h lag period, was proportional to the SP-B protein internalized by the cells, was inhibited 47% by ammonium chloride, was unaffected by the addition of protease inhibitors to the medium, and cell-conditioned medium produced only limited SP-B degradation. Alveolar macrophages also degraded SP-B, whereas other cell types degraded SP-B to a lesser extent. Thus the specificity of the metabolism of SP-B may be through the capability of lung cells to degrade SP-B.(ABSTRACT TRUNCATED AT 250 WORDS)
在肺泡II型细胞原代培养物中研究了表面活性蛋白B(SP-B)的代谢。用表面活性剂重构的碘化SP-B迅速被肺上皮细胞摄取,并在1小时的延迟期后降解为三氯乙酸(TCA)可溶性产物。无论是否向磷脂含量低的SP-B中添加磷脂脂质体或表面活性剂,SP-B的细胞降解都会发生。在37℃下,SP-B的摄取和降解在高达3μg SP-B/ml时呈线性增加,此后随着培养基中SP-B浓度的增加,曲线斜率变得不那么陡峭。与SP-B孵育4小时后,35%被处理的SP-B作为降解产物被回收。96%的降解产物在培养基中,仅4%在细胞中回收。SP-B的大部分分解发生在II型细胞内,因为在4℃下不发生降解,有1小时的延迟期,与细胞内化的SP-B蛋白成比例,被氯化铵抑制47%,不受向培养基中添加蛋白酶抑制剂影响,并且细胞条件培养基仅产生有限的SP-B降解。肺泡巨噬细胞也降解SP-B,而其他细胞类型降解SP-B的程度较小。因此SP-B代谢的特异性可能是通过肺细胞降解SP-B的能力实现的。(摘要截断于250字)