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Leucine transport in brush border membrane vesicles from freshwater insect larvae

机译:淡水昆虫幼虫在刷状缘膜囊泡中的亮氨酸转运

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Leucine transport across brush border membrane vesicles prepared from four insect species common to European freshwater streams has been characterized. The species studied were: Ephemera danica (Ephemeroptera: Ephemeridae), Isoperla grammatica (Plecoptera: Perlodidae), Hydropsyche pellucidula (Trichoptera: Hydropsychidae), and Hybomitra bimaculata (Diptera: Tabanidae). The transport differed among the studied taxa for several features, including pH and sodium dependence, substrate affinity and specificity, and efficiency. In H. pellucidula and E. danica, leucine uptake was higher at pH 7.4 than at more alkaline or acidic pH values, whereas in I. grammatica and H. bimaculata, the uptake was rather constant when pH varied from 5.0 to 7.4, then strongly decreased at pH 8.8. All but E. danica displayed a transient intravescicular leucine accumulation in the presence of sodium, suggesting the existence of a cation-leucine symport mechanism. The sodium dependence ranged according to the following order: H. pellucidula > I. grammatica > H. bimaculata > E. danica. Moreover, in H. pellucidula and I. grammatica, the sodium-dependence was stronger at pH 8.8 than at pH 7.4. In E. danica, leucine uptake was sodium-independent at all pH values. The highest value of V(max) (45.3 pmol.s(-1).mg proteins(-1)) was in E. danica, which, however, displayed the lowest affinity (K(m) 137 muM) when compared to the kinetic parameters of other taxa. The V(max) and K(m) values were: 40 and 52.5, 32.1 and 12.5, and 4.5 and 230 for H. bimaculata, H. pellucidula, and I. grammatica, respectively. The obtained results are discussed within our current knowledge of amino acid transport systems in insects.
机译:亮氨酸跨刷状缘膜囊泡运输的特征是由欧洲淡水流共有的四种昆虫物种制备的。所研究的物种为:丹参(Ephehemera danica)(Ephemeroptera:Ephemeridae),Isoperla grammatica(Plecoptera:Perlodidae),Hydropsyche pellucidula(Trichoptera:Hydropsychidae)和Hybomitra bimaculata(Diptera:Tabanidae)。所研究的分类单元之间的运输因几个特征而不同,包括pH和钠依赖性,底物亲和力和特异性以及效率。在H. pellucidula和E. danica中,在pH 7.4时,亮氨酸的摄取高于在更碱性或酸性的pH值下,而在I. grammatica和H. bimaculata中,当pH在5.0到7.4之间变化时,摄取相当稳定在pH 8.8时降低。除E. danica外,所有其他动物在钠存在下均表现出短暂的囊泡内亮氨酸积聚,表明存在阳离子-亮氨酸共价机制。钠依赖性的变化顺序如下:透明螺旋藻>语法杆菌>双歧杆菌>大肠杆菌。此外,在H.pellucidula和I. grammatica中,钠依赖性在pH 8.8时强于在pH 7.4时。在大肠埃希氏菌中,亮氨酸的摄取在所有pH值下都不依赖钠。 V.max的最大值(45.3 pmol.s(-1).mg蛋白质(-1))在大肠埃希氏菌中,但是与之相比,亲和力最低(K(m)137μM)。其他分类单元的动力学参数。 V.max和K(m)值分别为:双歧杆菌,透明血吸虫和文法玛氏菌分别为40和52.5、32.1和12.5,以及4.5和230。在我们目前对昆虫氨基酸转运系统的了解中讨论了获得的结果。

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