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首页> 外文期刊>The Journal of Experimental Biology >FUNCTIONAL CHARACTERIZATION OF LEUCINE TRANSPORT INDUCED IN XENOPUS LAEVIS OOCYTES INJECTED WITH MRNA ISOLATED FROM MIDGUTS OF LEPIDOPTERAN LARVAE (PHILOSAMIA CYNTHIA)
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FUNCTIONAL CHARACTERIZATION OF LEUCINE TRANSPORT INDUCED IN XENOPUS LAEVIS OOCYTES INJECTED WITH MRNA ISOLATED FROM MIDGUTS OF LEPIDOPTERAN LARVAE (PHILOSAMIA CYNTHIA)

机译:用分离自斜OP幼虫(PHILOSAMIA CYNTHIA)的MRNA注射的非洲爪蟾卵母细胞诱导的亮氨酸运输功能鉴定

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The injection of poly(A)+ mRNA prepared from Philosamia cynthia midgut caused time- and dose-dependent increases of leucine transport in Xenopus laevis oocytes, with an increase in leucine uptake 1.5-3 times that of oocytes injected with water, When the NaCl concentration was reduced from 100 to 5 mmol l(-1), the difference between mRNA- and water-injected oocytes was greater and a fourfold increase of L-leucine uptake was measured, D-Leucine (10 mmol l(-1)) completely inhibited the induced uptake of 0.1 mmol l(-1) L-leucine, The newly expressed component of L-leucine uptake increased at alkaline pH and was abolished by incubation for 15 min with 15 mmol l(-1) phenylglyoxal, The mean K-m values, calculated using Na+ activation curves of leucine uptake, were 23.3+/-6.1 mmol l(-1) in water-injected oocytes and 0.4+/-0.2 mmol l(-1) for the newly expressed component of leucine uptake in mRNA-injected oocytes. On the basis of these results, we conclude that the increase of L-leucine uptake in mRNA-injected oocytes was due to the expression of a new transport system, which differs from the endogenous ones and shares many features with that found previously in Philosamia cynthia midgut. [References: 23]
机译:当注射氯化钠时,注射来自费洛西辛中肠制备的poly(A)+ mRNA导致非洲爪蟾卵母细胞中亮氨酸转运的时间和剂量依赖性增加,亮氨酸吸收量是注水卵母细胞的1.5-3倍。浓度从100降低到5 mmol l(-1),mRNA和注水卵母细胞之间的差异更大,并且L-亮氨酸摄取量增加了四倍,D-亮氨酸(10 mmol l(-1))完全抑制了0.1 mmol l(-1)L-亮氨酸的诱导摄取,在碱性pH下,L-亮氨酸摄取的新表达成分增加,并与15 mmol l(-1)苯乙二醛孵育15分钟而废除。使用亮氨酸摄取的Na +激活曲线计算的Km值在注水卵母细胞中为23.3 +/- 6.1 mmol l(-1),而对于亮氨酸摄取中新表达的成分为0.4 +/- 0.2 mmol l(-1)。注射了mRNA的卵母细胞。根据这些结果,我们得出结论,注射mRNA的卵母细胞中L-亮氨酸摄取的增加是由于新转运系统的表达所致,该转运系统不同于内源转运系统,并且与以前在费城辛辛里发现的转运系统具有许多特征中肠。 [参考:23]

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