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APPARENT TRANS CONTROL OF MURINE βGLUCURONIDASE SYNTHESIS BY A TEMPORAL GENETIC ELEMENT

机译:暂时性遗传元件控制鼠β-葡糖醛酸糖苷酶合成的视转移

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A difference in the heat-inactivation kinetics between the β-glucuronidases of C3HeB/FeJ and C57Bl/6J mice was utilized to assess the mode of action of a temporal genetic element in controlling the expression of the β-glucuronidase structural gene Gus . The heat-inactivation kinetics of liver and kidney β-glucuronidase from F1 C3HeB/FeJ x C57Bl/6J animals were intermediate with respect to the parental enzyme patterns, suggesting that equal concentrations of the two allelic products were present in β-glucuronidase tetramers of F1 progeny. β-glucuronidase heteropolymers assembled in vivo under conditions where equal concentrations of the two structural alleles of the enzyme were known to be present also exhibited intermediate heat-inactivation kinetics. These observations are consistent with a trans mode of action of a genetic element that controls the rate of murine β-glucuronidase synthesis.
机译:利用C3HeB / FeJ和C57Bl / 6J小鼠的β-葡萄糖醛酸糖苷酶之间的热失活动力学差异来评估暂时性遗传元件在控制β-葡萄糖醛酸糖苷酶结构基因Gus表达中的作用方式。 F1 C3HeB / FeJ x C57Bl / 6J动物的肝脏和肾脏β-葡萄糖醛酸苷酶的热失活动力学在亲本酶模式方面处于中间水平,这表明F1的β-葡萄糖醛酸苷酶四聚体中存在相同浓度的两个等位基因产物。后代。在已知存在相同浓度的酶的两个结构等位基因的条件下,体内组装的β-葡萄糖醛酸苷酶杂聚物也表现出中等的热失活动力学。这些观察结果与控制鼠类β-葡糖醛酸糖苷酶合成速率的遗传元件的反式作用模式一致。

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