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亮氨酸:烟草品种黄花烟草培养细胞中的tRNA连接酶:从头合成及功能性酶分子丧失的证据

Leucine: tRNA Ligase from Cultured Cells of Nicotiana tabacum var. Xanthi: Evidence for de Novo Synthesis and for Loss of Functional Enzyme Molecules.

作者信息

Gore N R, Wray J L

机构信息

Department of Biochemistry, University of St. Andrews, North Street, St. Andrews, Fife, KY16 9AL, Scotland.

出版信息

Plant Physiol. 1978 Jan;61(1):20-4. doi: 10.1104/pp.61.1.20.

Abstract

Leucine:tRNA ligase was assayed in extracts from cultured tobacco (Nicotiana tabacum) XD cells by measuring the initial rate of aminoacylation of transfer RNA with l-[4,5-(3)H]leucine. Transfer RNA was purified from tobacco XD cells after the method of Vanderhoef et al. (Phytochemistry 9: 2291-2304). The buoyant density of leucine:tRNA ligase from cells grown for 100 generations in 2.5 mm [(15)N]nitrate and 30% deuterium oxide was 1.3397. After transfer of cells into light medium (2.5 mm [(14)N]nitrate and 100% H(2)O) the ligase activity increased and the buoyant density decreased with time to 1.3174 at 72 hours after transfer. It was concluded that leucine:tRNA ligase molecules were synthesized de novo from light amino acids during the period of activity increase. The width at half-peak height of the enzyme distribution profiles following isopycnic equilibrium centrifugation in caesium chloride remained constant at all times after transfer into light medium providing evidence for the loss of preexisting functional ligase molecules. It was concluded that during the period of activity increase the cellular level of enzyme activity was determined by a balance between de novo synthesis and the loss of functional enzyme molecules due to either inactivation or degradation.

摘要

亮氨酸

tRNA连接酶活性通过测量用L-[4,5-(3)H]亮氨酸对培养的烟草(Nicotiana tabacum)XD细胞提取物中转运RNA进行氨酰化的初始速率来测定。转运RNA按照Vanderhoef等人的方法(《植物化学》9:2291 - 2304)从烟草XD细胞中纯化得到。在2.5 mM [(15)N]硝酸盐和30%氧化氘中培养100代的细胞中,亮氨酸:tRNA连接酶的浮力密度为1.3397。将细胞转移到轻培养基(2.5 mM [(14)N]硝酸盐和100% H₂O)中后,连接酶活性增加,浮力密度随时间下降,转移后72小时降至1.3174。得出的结论是,在活性增加期间,亮氨酸:tRNA连接酶分子由轻氨基酸重新合成。转移到轻培养基后,在氯化铯中进行等密度平衡离心后,酶分布曲线的半峰高处宽度在所有时间都保持恒定,这为先前存在的功能性连接酶分子的丢失提供了证据。得出的结论是,在活性增加期间,细胞内酶活性水平由重新合成与由于失活或降解导致的功能性酶分子丢失之间的平衡决定。

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