Proteins

Lori A. S. Snyder
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Abstract

presence ofonly the 37,39-kD transducin a, ,B doublet on immunoblots. Quantification of transducin:rhodopsin ratios for purified rat ROS demonstrated that the concentration ofa and transducin subunits did not vary during the daily light:dark cycle (Fig. 1 and Table 1). In addition, no soluble pool of transducin was preferentially lost during preparation of darkor light-adapted ROS. In contrast, the major dark-soluble ROS protein, 48K (11), was reduced in concentration in ROS membranes prepared from dark-adapted retinas (Fig. 1, b through d). Thus, massive depletion of transducin polypeptides from ROS did not occur at any time during the daily light-dark cycle. Explanations other than subunit translocation must account for the twoto fourfold differ-
蛋白质
免疫印迹上仅存在37,39- kd转导蛋白a,,B双偶体。对纯化大鼠ROS的转导素:视紫红质比值的定量分析表明,在每天的明暗循环中,a和转导素亚基的浓度没有变化(图1和表1)。此外,在制备适应暗光或光的ROS过程中,没有可溶性转导素优先丢失。相反,主要的暗溶性ROS蛋白48K(11)在由适应暗的视网膜制备的ROS膜中浓度降低(图1,b至d)。因此,在日常的光-暗循环中,ROS中的转导多肽不会大量消耗。亚基移位以外的解释必须解释两到四倍的差异
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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