Mossink Marieke H, van Zon Arend, Scheper Rik J, Sonneveld Pieter, Wiemer Erik A C
Department of Hematology, Erasmus Medical Center, PO Box 1738, 3000 DR Rotterdam, The Netherlands.
Oncogene. 2003 Oct 20;22(47):7458-67. doi: 10.1038/sj.onc.1206947.
Vaults are ribonucleoprotein particles found in the cytoplasm of eucaryotic cells. The 13 MDa particles are composed of multiple copies of three proteins: an M(r) 100 000 major vault protein (MVP) and two minor vault proteins of M(r) 193 000 (vault poly-(ADP-ribose) polymerase) and M(r) 240 000 (telomerase-associated protein 1), as well as small untranslated RNA molecules of approximately 100 bases. Although the existence of vaults was first reported in the mid-1980s no function has yet been attributed to this organelle. The notion that vaults might play a role in drug resistance was suggested by the molecular identification of the lung resistance-related (LRP) protein as the human MVP. MVP/LRP was found to be overexpressed in many chemoresistant cancer cell lines and primary tumor samples of different histogenetic origin. Several, but not all, clinico-pathological studies showed that MVP expression at diagnosis was an independent adverse prognostic factor for response to chemotherapy. The hollow barrel-shaped structure of the vault complex and its subcellular localization indicate a function in intracellular transport. It was therefore postulated that vaults contributed to drug resistance by transporting drugs away from their intracellular targets and/or the sequestration of drugs. Here, we review the current knowledge on the vault complex and critically discuss the evidence that links vaults to drug resistance.
穹窿体是在真核细胞胞质中发现的核糖核蛋白颗粒。这些13兆道尔顿的颗粒由三种蛋白质的多个拷贝组成:一种分子量为100000的主要穹窿体蛋白(MVP)以及两种分子量分别为193000(穹窿体多聚(ADP - 核糖)聚合酶)和240000(端粒酶相关蛋白1)的次要穹窿体蛋白,还有大约100个碱基的小非翻译RNA分子。尽管穹窿体的存在早在20世纪80年代中期就有报道,但这个细胞器的功能至今仍未明确。肺耐药相关(LRP)蛋白被鉴定为人MVP,这提示了穹窿体可能在耐药性中发挥作用。在许多不同组织发生来源的化疗耐药癌细胞系和原发性肿瘤样本中发现MVP/LRP过表达。一些(但并非全部)临床病理研究表明,诊断时MVP表达是化疗反应的一个独立不良预后因素。穹窿体复合物的中空桶状结构及其亚细胞定位表明其在细胞内运输中发挥作用。因此推测,穹窿体通过将药物从细胞内靶点转运走和/或隔离药物来导致耐药性。在此,我们综述了关于穹窿体复合物的现有知识,并批判性地讨论了将穹窿体与耐药性联系起来的证据。