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Twin-arginine-dependent translocation of folded proteins

机译:双精氨酸依赖性折叠蛋白易位

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摘要

Twin-arginine translocation (Tat) denotes a protein transport pathway in bacteria, archaea and plant chloroplasts, which is specific for precursor proteins harbouring a characteristic twin-arginine pair in their signal sequences. Many Tat substrates receive cofactors and fold prior to translocation. For a subset of them, proofreading chaperones coordinate maturation and membrane-targeting. Tat translocases comprise two kinds of membrane proteins, a hexahelical TatC-type protein and one or two members of the single-spanning TatA protein family, called TatA and TatB. TatC- and TatA-type proteins form homo- and hetero-oligomeric complexes. The subunits of TatABC translocases are predominantly recovered from two separate complexes, a TatBC complex that might contain some TatA, and a homomeric TatA complex. TatB and TatC coordinately recognize twin-arginine signal peptides and accommodate them in membrane-embedded binding pockets. Advanced bind-ing of the signal sequence to the Tat translocase requires the proton-motive force (PMF) across the membranes and might involve a first recruitment of TatA. When targeted in this manner, folded twin-arginine precursors induce homo-oligomerization of TatB and TatA. Ultimately, this leads to the formation of a transmembrane protein conduit that possibly consists of a pore-like TatA structure. The translocation step again is dependent on the PMF.
机译:双精氨酸易位(Tat)表示细菌,古细菌和植物叶绿体中的蛋白质转运途径,该途径对于在其信号序列中具有特征性双精氨酸对的前体蛋白具有特异性。许多Tat底物在转运前会接受辅因子并折叠。对于其中的一部分,校对伴侣可以协调成熟和膜靶向。 Tat转位酶包含两种膜蛋白,一种是六螺旋TatC型蛋白,另一种是跨跨TatA蛋白家族的一个或两个成员,称为TatA和TatB。 TatC和TatA型蛋白形成同型和异型寡聚复合物。 TatABC转移酶的亚基主要从两个单独的复合物中回收,一个可能包含一些TatA的TatBC复合物,另一个是同型的TatA复合物。 TatB和TatC协调识别双精氨酸信号肽,并将其容纳在膜嵌入的结合袋中。信号序列与Tat转运酶的高级结合需要跨膜的质子动力(PMF),并且可能涉及TatA的首次募集。当以这种方式靶向时,折叠的双精氨酸前体诱导TatB和TatA的均聚。最终,这导致跨膜蛋白导管的形成,该膜可能由孔状TatA结构组成。易位步骤再次取决于PMF。

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