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通过溶酶体肽转运蛋白 TAPL 的 N 端结构域调节其细胞内转运。

Tuning the cellular trafficking of the lysosomal peptide transporter TAPL by its N-terminal domain.

机构信息

Institute of Biochemistry, Biocenter, Goethe-University Frankfurt, Max-von-Laue-Str. 9, D-60438 Frankfurt am Main, Germany.

出版信息

Traffic. 2010 Mar;11(3):383-93. doi: 10.1111/j.1600-0854.2009.01021.x.

Abstract

The homodimeric ATP-binding cassette (ABC) transport complex TAPL (transporter associated with antigen processing-like, ABCB9) translocates a broad spectrum of peptides from the cytosol into the lumen of lysosomes. The presence of an extra N-terminal transmembrane domain (TMD0) lacking any sequence homology to known proteins distinguishes TAPL from most other ABC transporters of its subfamily. By dissecting TAPL, we could assign distinct functions to the core complex and TMD0. The core-TAPL complex, composed of six predicted transmembrane helices and a nucleotide-binding domain, is sufficient for peptide transport, showing that the core transport complex is correctly targeted to and assembled in the membrane. Strikingly, in contrast to the full-length transporter, the core translocation complex is targeted preferentially to the plasma membrane. However, TMD0 alone, comprising a putative four transmembrane helix bundle, traffics to lysosomes. Upon coexpression, TMD0 forms a stable non-covalently linked complex with the core translocation machinery and guides core-TAPL into lysosomal compartments. Therefore, TMD0 represents a unique domain, which folds independently and encodes the information for lysosomal targeting. These outcomes are discussed in respect of trafficking, folding and function of TAPL.

摘要

同源二聚体 ATP 结合盒 (ABC) 转运复合物 TAPL(抗原加工相关转运蛋白样,ABCB9)将广泛的肽从细胞质转运到溶酶体腔中。额外的 N 端跨膜结构域 (TMD0) 的存在缺乏与已知蛋白的任何序列同源性,这将 TAPL 与该亚家族的大多数其他 ABC 转运蛋白区分开来。通过剖析 TAPL,我们可以将不同的功能分配给核心复合物和 TMD0。由六个预测的跨膜螺旋和核苷酸结合域组成的核心-TAPL 复合物足以进行肽转运,表明核心转运复合物已正确靶向并组装在膜上。引人注目的是,与全长转运体相比,核心转运复合物优先靶向质膜。然而,仅由假定的四个跨膜螺旋束组成的 TMD0 会向溶酶体运输。在共表达时,TMD0 与核心转运机制形成稳定的非共价连接复合物,并将核心-TAPL 引导至溶酶体区室。因此,TMD0 代表一个独特的结构域,它可以独立折叠并编码溶酶体靶向的信息。这些结果将在 TAPL 的运输、折叠和功能方面进行讨论。

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