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曼氏血吸虫、日本血吸虫和埃及血吸虫:对酸性氨基酸的通透性以及完整成虫与分离成虫的影响

Schistosoma mansoni, S. japonicum, and S. haematobium: permeability to acidic amino acids and effect of separated and unseparated adults.

作者信息

Cornford E M

出版信息

Exp Parasitol. 1985 Jun;59(3):355-63. doi: 10.1016/0014-4894(85)90091-8.

Abstract

Permeability of the tegument of male and female Schistosoma mansoni was measured in vitro and a comparison was made between copulating and separated worms. In unpaired (separated) schistosomes, a carrier-mediated (selective) transport system for acidic amino acids was demonstrated. Males and females exhibited similar uptake rates for aspartate and glutamate. Half-saturation constants for aspartate (males, 0.035 +/- 0.008 mM; females, 0.026 +/- 0.006 mM) and glutamate (males, 0.010 +/- 0.007 mM; females, 0.015 +/- 0.004 mM) were determined for separated worms only. Time-course studies provided estimates of aspartate influx rates in males (7.3 pmol min-1 worm-1) and females (2.3 pmol min-1 worm-1). The most dramatic observation, however, was that, in copula, neither male nor female schistosomes took up acidic amino acids, but may have excluded these compounds. Thus, this ouabain-insensitive, mediated mechanism was operational only when the worms were unmated. In S. japonicum, no uptake of glutamate was observed in either mated or separated males and females. In S. haematobium, saturable uptake of aspartate was apparent in both mated and unmated males and females, indicating that species-specific differences in uptake of acidic amino acids existed. These studies indicate the need for cautious interpretation of data obtained from in vitro analyses of separated male and female mansonian schistosomes, and that such conditions may not reflect in vivo or in copula function.

摘要

在体外测量了曼氏血吸虫雌雄虫体表皮的通透性,并对交配和分离的虫体进行了比较。在未配对(分离)的血吸虫中,证明了存在一种酸性氨基酸的载体介导(选择性)转运系统。雄虫和雌虫对天冬氨酸和谷氨酸的摄取率相似。仅对分离的虫体测定了天冬氨酸(雄虫,0.035±0.008 mM;雌虫,0.026±0.006 mM)和谷氨酸(雄虫,0.010±0.007 mM;雌虫,0.015±0.004 mM)的半饱和常数。时间进程研究提供了雄虫(7.3 pmol min-1虫体-1)和雌虫(2.3 pmol min-1虫体-1)中天冬氨酸流入速率的估计值。然而,最引人注目的观察结果是,在交配时,雄虫和雌虫都不摄取酸性氨基酸,反而可能排除这些化合物。因此,这种对哇巴因不敏感的介导机制仅在虫体未交配时起作用。在日本血吸虫中,无论交配还是分离的雄虫和雌虫均未观察到对谷氨酸的摄取。在埃及血吸虫中,无论交配还是未交配的雄虫和雌虫中,天冬氨酸的可饱和摄取均很明显,这表明在酸性氨基酸摄取方面存在种属特异性差异。这些研究表明,对于从体外分析分离的曼氏血吸虫雌雄虫体获得的数据需要谨慎解读,而且这样的条件可能无法反映体内或交配时的功能。

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