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Folding and self-association of atTic20 in lipid membranes: implications for understanding protein transport across the inner envelope membrane of chloroplasts

机译:脂膜中atTic20的折叠和自缔合:了解蛋白质跨叶绿体内膜的转运的意义

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The Arabidopsis thaliana protein atTic20 is a key component of the protein import machinery at the inner envelope membrane of chloroplasts. As a component of the TIC complex, it is believed to form a preprotein-conducting channel across the inner membrane. We report a method for producing large amounts of recombinant atTic20 using a codon-optimized strain of E. coli coupled with an autoinduction method of protein expression. This method resulted in the recombinant protein being directed to the bacterial membrane without the addition of a bacterial targeting sequence. Using biochemical and biophysical approaches, we were able to demonstrate that atTic20 homo-oligomerizes in vitro when solubilized in detergents or reconstituted into liposomes. Furthermore, we present evidence that the extramembranous N-terminus of the mature protein displays characteristics that are consistent with it being an intrinsically disordered protein domain. Our work strengthens the hypothesis that atTic20 functions similarly to other small α-helical integral membrane proteins, such as Tim23, that are involved in protein transport across membranes.
机译:拟南芥蛋白atTic20是叶绿体内膜上蛋白导入机制的关键组成部分。作为TIC复合物的组分,据信在整个内膜上形成了前蛋白传导通道。我们报告了一种使用密码子优化的大肠杆菌菌株以及蛋白质表达的自动诱导方法生产大量重组atTic20的方法。该方法导致将重组蛋白直接导向细菌膜,而无需添加细菌靶向序列。使用生化和生物物理方法,我们能够证明atTic20在溶解于去污剂或重组为脂质体后在体外均聚。此外,我们提供了证据,即成熟蛋白的膜外N端显示出与其固有的无序蛋白结构域一致的特征。我们的工作加强了这样的假设,即atTic20的功能与其他小的α螺旋整体膜蛋白(例如Tim23)相似,后者参与跨膜蛋白的运输。

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