Davis E C, Mecham R P
Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 1996 Feb 16;271(7):3787-94.
The specific pathway of tropoelastin secretion was investigated in fetal calf ligamentum nuchae (FCL) cells using brefeldin A (BFA) to disrupt the secretory pathway. Electron microscopic studies of BFA-treated FCL cells showed ultrastructural changes consistent with the reported effects of BFA on intracellular organelles. When FCL cells were labeled with [3H]leucine in the presence of BFA, radiolabeled tropoelastin was not secreted, nor was there an intracellular accumulation of the protein. In contrast, fibronectin accumulated within the cells in the presence of BFA. Northern analysis of mRNA levels in FCL cells showed that the message for tropoelastin was unaffected by BFA treatment. Pulse chase experiments conducted in the presence of BFA demonstrated that the tropoelastin retained within the cells was rapidly degraded. Ammonium chloride, nocodazole, and cycloheximide had no effect on the degradation of tropoelastin, indicating that the degradation did not involve the endosome/lysosome pathway, movement via microtubules, or a short-lived protein, respectively. Incubation of FCL cells with BFA in the presence of N-acetyl-Leu-Leu-norleucinal, however, allowed tropoelastin to steadily accumulate in the cells. Cells pulsed in the presence of BFA alone showed that tropoelastin initially accumulates within the cells for approximately 1 h prior to being degraded, thus indicating that a critical threshold of tropoelastin must be reached before degradation can occur. Results from this study provide evidence for selective degradation of a soluble secreted protein by a cysteine protease following retention of the protein in the endoplasmic reticulum.
利用布雷菲德菌素A(BFA)破坏分泌途径,研究了胎牛项韧带(FCL)细胞中原弹性蛋白的具体分泌途径。对经BFA处理的FCL细胞进行电子显微镜研究,结果显示超微结构变化与报道的BFA对细胞内细胞器的作用一致。当在BFA存在的情况下用[3H]亮氨酸标记FCL细胞时,放射性标记的原弹性蛋白未分泌,细胞内也没有该蛋白的积累。相比之下,在BFA存在的情况下,纤连蛋白在细胞内积累。对FCL细胞中mRNA水平进行的Northern分析表明,原弹性蛋白的信使核糖核酸不受BFA处理的影响。在BFA存在的情况下进行的脉冲追踪实验表明,保留在细胞内的原弹性蛋白迅速降解。氯化铵、诺考达唑和环己酰亚胺对原弹性蛋白的降解没有影响,这分别表明降解不涉及内体/溶酶体途径、通过微管的移动或短寿命蛋白。然而,在N-乙酰亮氨酰-亮氨酰-正亮氨酸存在的情况下,用BFA孵育FCL细胞,可使原弹性蛋白在细胞内稳定积累。仅在BFA存在的情况下进行脉冲处理的细胞表明,原弹性蛋白在降解前最初在细胞内积累约1小时,因此表明在发生降解之前必须达到原弹性蛋白的临界阈值。本研究结果为内质网中一种可溶性分泌蛋白在滞留后被半胱氨酸蛋白酶选择性降解提供了证据。