Zhou Y, Podesta R B
Department of Zoology, University of Western Ontario, London, Canada.
J Parasitol. 1989 Jun;75(3):333-43.
The syncytial surface epithelium of Schistosoma mansoni plays an important role in immune evasion. This syncytium is covered by an unusual double-membrane complex consisting of an apical plasma membrane (APM) and an overlying envelope (En) that have been shown to have different rates of synthesis and turnover. It has been suggested that discoid bodies (DBs) and multilamellar bodies (MLBs), the major syncytial inclusion bodies of schistosomes, may be the precursors of the APM and En, respectively. In this ultrastructural study, we examined the effects of serotonin (5HT) and complement C3, which have been shown to stimulate synthesis and turnover of the APM and En, respectively, on the synthesis of DBs and MLBs in vitro. With short-time incubations (20 or 40 min), 5HT stimulated the synthesis of the DBs by 2-fold, whereas C3 accelerated synthesis of the MLBs by 2-fold. Furthermore, when microtubules within the cytoplasmic connections between the syncytium and the underlying cell bodies (the site of membrane synthesis) were disrupted with colchicine, the DBs and MLBs synthesized in response to 5HT or C3 accumulated in the cell bodies. This suggests that the transport of the organelles to the syncytium is dependent upon the microtubules but not the signaling mechanism in response to 5HT or C3. These observations also support the suggestion that the DBs and MLBs are synthesized in subsyncytial cell bodies and serve as precursors of the APM and En, respectively. The rapid synthetic response to 5HT and C3 is also consistent with rapid synthesis and turnover of the APM/En, as suggested by previous studies.
曼氏血吸虫的合体表面上皮在免疫逃避中起重要作用。这种合体被一种不寻常的双膜复合体覆盖,该复合体由顶端质膜(APM)和覆盖其上的包膜(En)组成,已证明它们具有不同的合成和周转速率。有人提出,盘状体(DBs)和多板层体(MLBs)是血吸虫主要的合体包涵体,可能分别是APM和En的前体。在这项超微结构研究中,我们研究了血清素(5HT)和补体C3对体外DBs和MLBs合成的影响,已证明它们分别刺激APM和En的合成和周转。经过短时间孵育(20或40分钟),5HT使DBs的合成增加了2倍,而C3使MLBs的合成加速了2倍。此外,当用秋水仙碱破坏合体与下层细胞体(膜合成部位)之间细胞质连接中的微管时,响应5HT或C3合成的DBs和MLBs在细胞体中积累。这表明细胞器向合体的运输依赖于微管,而不是响应5HT或C3的信号机制。这些观察结果也支持了DBs和MLBs分别在合体下细胞体中合成并作为APM和En前体的观点。对5HT和C3的快速合成反应也与先前研究所表明的APM/En的快速合成和周转一致。