McLeod R S, Robbins C, Burns A, Yao Z, Pritchard P H
Department of Pathology, University of British Columbia, Vancouver, Canada.
Biochem J. 1994 Sep 15;302 ( Pt 3)(Pt 3):641-8. doi: 10.1042/bj3020641.
Human apolipoprotein (apo) A-I is secreted as a proprotein of 249 amino acids and is processed extracellularly to the mature form (243 amino acids) by removal of a six-residue propeptide segment. We have examined the role of the apoA-I propeptide in intracellular transport and secretion using transfected baby hamster kidney cells that secreted either proapoA-I (from the wild-type cDNA, A-Iwt) or mature-form apoA-I (from A-I delta pro, a cDNA in which the propeptide sequence was deleted). Deletion of the propeptide from the apoA-I sequence did not affect the rate of apoA-I synthesis, nor did it affect the fidelity of proteolytic removal of the prepeptide. However, the propeptide deletion caused mature-form apoA-I to accumulate within the cells as determined by pulse-chase experiments; the intracellular retention times for the mature-form apoA-I in which the propeptide was prematurely removed was three times longer than that of proapoA-I (t1/2 > 3 h compared with approximately 50 min). There was no detectable degradation of either form of newly synthesized apoA-I. Immunofluorescence microscopy revealed that, whereas the proapoA-I was located predominantly in the Golgi apparatus, large quantities of the mature-form apoA-I were detected in the endoplasmic reticulum and very little was in the Golgi apparatus of A-I delta pro-transfected cells. These findings suggest that the propeptide sequence may be involved in the intracellular transport of apoA-I from the endoplasmic reticulum to the Golgi apparatus. We propose that the function of the propeptide sequence is to facilitate efficient transport of apoA-I through the secretory pathway.
人载脂蛋白(apo)A-I以249个氨基酸的前体蛋白形式分泌,并通过去除一个六残基的前肽段在细胞外加工成成熟形式(243个氨基酸)。我们使用转染的幼仓鼠肾细胞研究了apoA-I前肽在细胞内运输和分泌中的作用,这些细胞分泌前体apoA-I(来自野生型cDNA,A-Iwt)或成熟形式的apoA-I(来自A-I delta pro,一种缺失前肽序列的cDNA)。从apoA-I序列中删除前肽既不影响apoA-I的合成速率,也不影响前肽蛋白水解去除的保真度。然而,脉冲追踪实验表明,前肽缺失导致成熟形式的apoA-I在细胞内积累;前肽被过早去除的成熟形式的apoA-I在细胞内的保留时间比前体apoA-I长三倍(t1/2 > 3小时,而前体apoA-I约为50分钟)。新合成的两种形式的apoA-I均未检测到降解。免疫荧光显微镜显示,前体apoA-I主要位于高尔基体中,而在A-I delta pro转染细胞的内质网中检测到大量成熟形式的apoA-I,在高尔基体中则很少。这些发现表明,前肽序列可能参与apoA-I从内质网到高尔基体的细胞内运输。我们提出,前肽序列的功能是促进apoA-I通过分泌途径的有效运输。