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Temperature- and acceptor-specificity of cell-free vesicular transfer from transitional endoplasmic reticulum to the cis Golgi apparatus.

机译:从过渡性内质网到顺式高尔基体的无细胞囊泡转移的温度和受体特异性。

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摘要

The temperature dependence and specificity of transfer of membrane constituents from donor transitional endoplasmic reticulum to the cis Golgi apparatus were investigated using a cell-free system from rat liver. The radiolabelled transitional endoplasmic reticulum donors were prepared from slices of rat liver prelabelled with [14C]leucine. The acceptor Golgi apparatus elements were unlabelled and immobilized on nitrocellulose. When Golgi apparatus stacks were separated by preparative free-flow electrophoresis into subfractions enriched in cisternae derived from the cis, medial and trans portions of the stack respectively, efficient specific transfer was observed only to cis elements. Trans elements were devoid of specific acceptor capacity. Similarly, when transfer was determined as a function of temperature, a transition was observed in transfer activity between 12 degrees C and 18 degrees C similar to that seen in vivo for formation of the so-called 16 degrees C cis Golgi-located membrane compartment. Transfer at temperatures below 16 degrees C and transfer to trans Golgi apparatus compartments at temperatures either above or below 16 degrees C was similar and unspecific. The unspecific transfer at low temperature was pH independent, whereas specific transfer was greatest at the physiological pH of 7, and was reduced to 10% and 18% of that occurring at pH 8 and pH 5.5 respectively. These findings show that the cell-free system derived from rat liver exhibits a high degree of fidelity to transfer in vivo, an efficiency approaching that observed in vivo, and a nearly absolute acceptor specificity for cis Golgi apparatus. The acceptor-, temperature- and pH-specificity of the cell-free transfer, as well as the saturation kinetics exhibited with respect to acceptor Golgi apparatus, support the concept of transition-vesicle-specific docking sites of finite number associated with cis Golgi apparatus cisternae.
机译:使用大鼠肝脏无细胞系统研究了温度依赖性和膜成分从供体过渡性内质网转移到顺式高尔基体的温度依赖性和特异性。放射性标记的过渡性内质网供体是从预先标记有[14C]亮氨酸的大鼠肝脏切片中制备的。受体高尔基体元件未标记,并固定在硝酸纤维素上。当通过制备性自由流电泳将高尔基体叠层分离成富含分别源自叠层的顺式,中间和反式部分的池中的亚组分时,仅观察到了向顺式元素的有效特异性转移。反式元素缺乏特定的受体能力。类似地,当确定转移是温度的函数时,观察到转移活性在12摄氏度至18摄氏度之间发生了转变,这与体内形成所谓的16摄氏度位于高尔基体的顺式膜室形成的现象相似。在低于16摄氏度的温度下转移和在高于或低于16摄氏度的温度下转移到反式高尔基体装置隔室是相似且没有特异性的。低温下的非特异性转移与pH无关,而在生理pH为7时,特异性转移最大,分别降至pH 8和pH 5.5时的10%和18%。这些发现表明,源自大鼠肝脏的无细胞系统表现出高度的体内保真度,其效率接近体内观察到的效率,并且对顺式高尔基体几乎具有绝对的受体特异性。无细胞转移的受体,温度和pH特异性以及相对于受体高尔基体表现出的饱和动力学,支持了与顺式高尔基体相关的有限数量的过渡膜特异对接位点的概念。蓄水池。

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