Pihlajaniemi T, Myllylä R, Alitalo K, Vaheri A, Kivirikko K I
Biochemistry. 1981 Dec 22;20(26):7409-15. doi: 10.1021/bi00529a014.
Factors responsible for the high extent of intracellular posttranslational modifications in type IV collagens were studied in a cultured human tumor cell line, HT-1080. These cells do not synthesize any detectable amounts of interstitial collagens but produce type IV collagen at a high rate, corresponding to about one-third of the production of interstitial collagens by cultured human skin fibroblasts. Prolyl 4-hydroxylase activity was lower in the HT-1080 cells than in human skin fibroblasts, there being a rough correlation between this enzyme activity and the rate of 4-hydroxyproline formation in these two cell types. The differing extents of the respective modifications could largely be explained by differences in the activities of lysyl hydroxylase and the hydroxylysyl glycosyltransferases between the two cell types. No difference ws found in prolyl 3-hydroxylase activity, however, even though the extent of 3-hydroxylation of proline residues was about 6-fold in the type IV collagens. In experiments where the HT-1080 cells were studied in suspension, a lag of about 100 min was found before the secretion of type IV collagen from the cells became linear. Pulse-chase experiments in suspension indicated that all the intracellular enzyme reactions proceeded for about 40 min, presumably due to the slow triple-helix formation in type IV collagens. This slow helix formation apparently contributed to the high extent of all the intracellular modifications but was not a major factor.
在人源肿瘤细胞系HT - 1080中,研究了导致IV型胶原蛋白细胞内翻译后修饰程度较高的因素。这些细胞不合成任何可检测量的间质胶原蛋白,但能高速率产生IV型胶原蛋白,这一速率约相当于培养的人皮肤成纤维细胞产生间质胶原蛋白速率的三分之一。HT - 1080细胞中的脯氨酰4 - 羟化酶活性低于人皮肤成纤维细胞,在这两种细胞类型中,该酶活性与4 - 羟脯氨酸形成速率之间存在大致的相关性。两种细胞类型中各自修饰程度的差异很大程度上可以由赖氨酰羟化酶和羟赖氨酰糖基转移酶活性的差异来解释。然而,尽管IV型胶原蛋白中脯氨酸残基的3 - 羟化程度约为6倍,但未发现脯氨酰3 - 羟化酶活性存在差异。在对悬浮培养的HT - 1080细胞进行的实验中,发现细胞分泌IV型胶原蛋白变为线性之前有大约100分钟的延迟。悬浮培养的脉冲追踪实验表明,所有细胞内酶反应持续约40分钟,这可能是由于IV型胶原蛋白中三螺旋形成缓慢所致。这种缓慢的螺旋形成显然促成了所有细胞内修饰的高程度,但并非主要因素。