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The mechanism of tail-anchored protein insertion into the ER membrane.

机译:尾部锚定蛋白质插入ER膜的机制。

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Tail-anchored (TA) proteins access the secretory pathway via posttranslational insertion of their C-terminal transmembrane domain into the endoplasmic reticulum (ER). Get3 is an ATPase that delivers TA proteins to the ER by interacting with the Get1-Get2 transmembrane complex, but how Get3's nucleotide cycle drives TA protein insertion remains unclear. Here, we establish that nucleotide binding to Get3 promotes Get3-TA protein complex formation by recruiting Get3 to a chaperone that hands over TA proteins to Get3. Biochemical reconstitution and mutagenesis reveal that the Get1-Get2 complex comprises the minimal TA protein insertion machinery with functionally critical cytosolic regions. By engineering a soluble heterodimer of Get1-Get2 cytosolic domains, we uncover the mechanism of TA protein release from Get3: Get2 tethers Get3-TA protein complexes into proximity with the ATPase-dependent, substrate-releasing activity of Get1. Lastly, we show that ATP enhances Get3 dissociation from the membrane, thus freeing Get1-Get2 for new rounds of substrate insertion.
机译:尾锚定(TA)蛋白通过将其C端跨膜结构域翻译后插入到内质网(ER)中来进入分泌途径。 Get3是一种ATP酶,通过与Get1-Get2跨膜复合物相互作用将TA蛋白传递到ER,但是尚不清楚Get3的核苷酸循环如何驱动TA蛋白插入。在这里,我们建立了与Get3的核苷酸结合,通过将Get3募集到将TA蛋白移交给Get3的伴侣来促进Get3-TA蛋白复合物的形成。生化重建和诱变表明,Get1-Get2复合物包含具有功能关键性胞质区的最小TA蛋白插入机制。通过工程化Get1-Get2胞质域的可溶性异二聚体,我们揭示了从Get3释放TA蛋白的机制:Get2系链Get3-TA蛋白复合物与Get1的ATPase依赖性底物释放活性接近。最后,我们表明ATP增强了Get3从膜的解离,从而使Get1-Get2释放了新一轮的底物插入。

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