Versatile allosteric properties in Pex5-like tetratricopeptide repeat proteins to induce diverse downstream function.

IF 3.6 3区 生物学 Q3 CELL BIOLOGY Traffic Pub Date : 2021-05-01 Epub Date: 2021-02-26 DOI:10.1111/tra.12785
Jérôme Bürgi, Lakhan Ekal, Matthias Wilmanns
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引用次数: 3

Abstract

Proteins composed of tetratricopeptide repeat (TPR) arrays belong to the α-solenoid tandem-repeat family that have unique properties in terms of their overall conformational flexibility and ability to bind to multiple protein ligands. The peroxisomal matrix protein import receptor Pex5 comprises two TPR triplets that recognize protein cargos with a specific C-terminal Peroxisomal Targeting Signal (PTS) 1 motif. Import of PTS1-containing protein cargos into peroxisomes through a transient pore is mainly driven by allosteric binding, coupling and release mechanisms, without a need for external energy. A very similar TPR architecture is found in the functionally unrelated TRIP8b, a regulator of the hyperpolarization-activated cyclic nucleotide-gated (HCN) ion channel. TRIP8b binds to the HCN ion channel via a C-terminal sequence motif that is nearly identical to the PTS1 motif of Pex5 receptor cargos. Pex5, Pex5-related Pex9, and TRIP8b also share a less conserved N-terminal domain. This domain provides a second protein cargo-binding site and plays a distinct role in allosteric coupling of initial cargo loading by PTS1 motif-mediated interactions and different downstream functional readouts. The data reviewed here highlight the overarching role of molecular allostery in driving the diverse functions of TPR array proteins, which could form a model for other α-solenoid tandem-repeat proteins involved in translocation processes across membranes.

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pex5样四肽重复蛋白的多种变构特性诱导多种下游功能。
由四肽重复序列(TPR)阵列组成的蛋白质属于α-螺线管串联重复序列家族,在整体构象灵活性和与多种蛋白质配体结合的能力方面具有独特的性质。过氧化物酶体基质蛋白质输入受体Pex5包括两个TPR三联体,它们识别具有特定c端过氧化物酶体靶向信号(PTS) 1基序的蛋白质货物。含有pts1的蛋白质通过瞬时孔隙进入过氧化物酶体,主要由变弹性结合、偶联和释放机制驱动,不需要外部能量。在功能无关的TRIP8b中发现了非常相似的TPR结构,TRIP8b是超极化激活的环核苷酸门控(HCN)离子通道的调节剂。TRIP8b通过c端序列基序与HCN离子通道结合,该基序与Pex5受体的PTS1基序几乎相同。Pex5、与Pex5相关的Pex9和TRIP8b也共享一个保守性较低的n端结构域。该结构域提供了第二个蛋白质货物结合位点,在PTS1基序介导的初始货物装载的变构耦合和不同的下游功能读数中起着独特的作用。本文回顾的数据强调了分子变构在驱动TPR阵列蛋白多种功能中的重要作用,这可能为其他参与跨膜易位过程的α-螺线管串联重复序列蛋白提供了一个模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Traffic
Traffic 生物-细胞生物学
CiteScore
8.10
自引率
2.20%
发文量
50
审稿时长
2 months
期刊介绍: Traffic encourages and facilitates the publication of papers in any field relating to intracellular transport in health and disease. Traffic papers span disciplines such as developmental biology, neuroscience, innate and adaptive immunity, epithelial cell biology, intracellular pathogens and host-pathogen interactions, among others using any eukaryotic model system. Areas of particular interest include protein, nucleic acid and lipid traffic, molecular motors, intracellular pathogens, intracellular proteolysis, nuclear import and export, cytokinesis and the cell cycle, the interface between signaling and trafficking or localization, protein translocation, the cell biology of adaptive an innate immunity, organelle biogenesis, metabolism, cell polarity and organization, and organelle movement. All aspects of the structural, molecular biology, biochemistry, genetics, morphology, intracellular signaling and relationship to hereditary or infectious diseases will be covered. Manuscripts must provide a clear conceptual or mechanistic advance. The editors will reject papers that require major changes, including addition of significant experimental data or other significant revision. Traffic will consider manuscripts of any length, but encourages authors to limit their papers to 16 typeset pages or less.
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