Zenger Serhan, Ek-Rylander Barbro, Andersson Göran
Department of Laboratory Medicine, Division of Pathology, Karolinska Institutet, Karolinska University Hospital, Huddinge, SE-141 86, Sweden.
Biochim Biophys Acta. 2010 May;1803(5):598-607. doi: 10.1016/j.bbamcr.2010.01.021. Epub 2010 Feb 10.
Tartrate-resistant acid phosphatase, although encoded by a single gene, exists as two isoforms in human serum, TRAP 5a and 5b, differing in post-translational modifications such as proteolytic processing and kinetic properties including pH optimum and specific activity. The biogenetic relationship between the TRAP isoforms was assessed in a stably transfected breast cancer epithelial MDA-MB-231 cell subline overexpressing 5a- and 5b-like TRAP isoforms intracellularly, with only the monomeric 5a-like isoform being secreted. As judged by immunolocalization and comparative N-glycan profiling by Con A lectin chromatography and glycanase analysis, the majority of the intracellular monomeric TRAP was destined for secretion, while a minor portion provided the putative precursor for the intracellular 5b-like isoform. Brefeldin A blocked secretion of 5a-like TRAP isoform as well as appearance of its putative intracellular precursor, and augmented the intracellular level of proteolytically processed 5b-like isoform, indicating a common early biosynthetic precursor for TRAP isoforms 5a and 5b. The cysteine proteinase inhibitor E64 partially blocked formation of the 5b-like isoform while augmenting the level of its putative monomeric precursor, but did not alter the levels of secreted TRAP or its intracellular precursor, suggesting that distinct precursors for secreted TRAP 5a and intracellular 5b-like isoform are segregated in the ER or Golgi prior to proteolytic processing. In conclusion, these data provide evidence that distinct monomeric TRAP populations are diverted early in the secretory pathway either giving rise to a secreted, monomeric 5a-like TRAP isoform or to an intracellular, proteolytically processed 5b-like TRAP isoform.
抗酒石酸酸性磷酸酶虽然由单个基因编码,但在人血清中以两种同工型存在,即TRAP 5a和5b,它们在翻译后修饰(如蛋白水解加工)以及动力学特性(包括最适pH和比活性)方面存在差异。在稳定转染的乳腺癌上皮MDA-MB-231细胞亚系中评估了TRAP同工型之间的生物发生关系,该亚系在细胞内过表达5a样和5b样TRAP同工型,只有单体5a样同工型被分泌。通过免疫定位以及伴刀豆球蛋白A凝集素色谱法和聚糖酶分析进行的比较N-聚糖谱分析判断,大多数细胞内单体TRAP注定会被分泌,而一小部分则为细胞内5b样同工型提供推定的前体。布雷菲德菌素A阻断了5a样TRAP同工型的分泌及其推定的细胞内前体的出现,并增加了蛋白水解加工后的5b样同工型的细胞内水平,表明TRAP同工型5a和5b有共同的早期生物合成前体。半胱氨酸蛋白酶抑制剂E64部分阻断了5b样同工型的形成,同时增加了其推定单体前体的水平,但没有改变分泌型TRAP或其细胞内前体的水平,这表明分泌型TRAP 5a和细胞内5b样同工型的不同前体在蛋白水解加工之前在内质网或高尔基体中被分离。总之,这些数据提供了证据,表明不同的单体TRAP群体在分泌途径的早期就被分流,要么产生分泌型单体5a样TRAP同工型,要么产生细胞内蛋白水解加工后的5b样TRAP同工型。