Scott D A, de Souza W, Benchimol M, Zhong L, Lu H G, Moreno S N, Docampo R
Laboratory of Molecular Parasitology, Department of Pathobiology, University of Illinois, Urbana, Illinois 61802, USA.
J Biol Chem. 1998 Aug 21;273(34):22151-8. doi: 10.1074/jbc.273.34.22151.
The vacuolar-type proton-translocating pyrophosphatase (V-H+-PPase) is an enzyme previously described in detail only in plants. This paper demonstrates its presence in the trypanosomatid Trypanosoma cruzi. Pyrophosphate promoted organellar acidification in permeabilized amastigotes, epimastigotes, and trypomastigotes of T. cruzi. This activity was stimulated by K+ ions and was inhibited by Na+ ions and pyrophosphate analogs, as is the plant activity. Separation of epimastigote extracts on Percoll gradients yielded a dense fraction that contained H+-PPase activity measured both by proton uptake and phosphate release but lacked markers for mitochondria, lysosomes, glycosomes, cytosol, and plasma membrane. Antiserum raised against specific sequences of the plant V-H+-PPase cross-reacted with a T. cruzi protein, which was also detectable in the dense Percoll fraction. The organelles in this fraction appeared by electron microscopy to consist mainly of acidocalcisomes (acidic calcium storage organelles). This identification was confirmed by x-ray microanalysis. Immunofluorescence and immunoelectron microscopy indicated that the V-H+-PPase was located in the plasma membrane and acidocalcisomes of the three different forms of the parasite. Pyrophosphate was able to drive calcium uptake in permeabilized T. cruzi. This uptake depended upon a proton gradient and was reversed by a specific V-H+-PPase inhibitor. Our results imply that the phylogenetic distribution of V-H+-PPases is much wider than previously perceived but that the enzyme has a unique subcellular location in trypanosomes.
液泡型质子转运焦磷酸酶(V-H⁺-PPase)是一种此前仅在植物中被详细描述过的酶。本文证明了它在锥虫科克氏锥虫中的存在。焦磷酸促进了克氏锥虫透化后的无鞭毛体、前鞭毛体和锥鞭毛体的细胞器酸化。这种活性受到钾离子的刺激,而被钠离子和焦磷酸类似物抑制,这与植物中的活性情况相同。在前密度梯度介质上分离前鞭毛体提取物得到一个致密组分,该组分含有通过质子摄取和磷酸盐释放测量的H⁺-PPase活性,但缺乏线粒体、溶酶体、糖体、细胞质和质膜的标志物。针对植物V-H⁺-PPase的特定序列产生的抗血清与一种克氏锥虫蛋白发生交叉反应,该蛋白在致密的前密度梯度介质组分中也可检测到。通过电子显微镜观察,该组分中的细胞器似乎主要由酸性钙小体(酸性钙储存细胞器)组成。这一鉴定通过X射线微分析得到证实。免疫荧光和免疫电子显微镜表明,V-H⁺-PPase位于寄生虫三种不同形态的质膜和酸性钙小体中。焦磷酸能够驱动透化后的克氏锥虫摄取钙。这种摄取依赖于质子梯度,并被一种特异性的V-H⁺-PPase抑制剂逆转。我们的结果表明,V-H⁺-PPases的系统发育分布比之前认为的要广泛得多,但该酶在锥虫中有独特的亚细胞定位。