束状和伸长zeta蛋白1和2:从结构灵活性到功能多样性。

Mariana Bertini Teixeira, Marcos Rodrigo Alborghetti, Jörg Kobarg
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引用次数: 10

摘要

束状和伸长zeta/zygin (FEZ)蛋白是一个中心蛋白家族,具有许多特征,如相互作用网络中的高连通性,它们参与多个细胞过程,进化缓慢,通常具有内在无序的区域。1985年首次发现unc-76基因参与秀丽隐杆线虫轴突生长,1997年Bloom和Horvitz又发现了人类的同源基因FEZ1和FEZ2参与这一过程。线虫有一个基因(unc-76),哺乳动物有一个拷贝(FEZ1和FEZ2)。一些动物模型已被用于研究FEZ家族功能,如秀丽隐索线虫、黑腹线虫、褐皮线虫和人类细胞。进行了互补分析,并证明了平行物之间的功能守恒。对人FEZ1蛋白的研究较多,其次是UNC-76和FEZ2蛋白。FEZ1和UNC-76共享相互作用伙伴,FEZ2进化并增加了与细胞质伙伴的蛋白-蛋白相互作用(PPI)的数量。FEZ蛋白参与细胞内运输,在激酶介导的运动中作为二价货物运输适配器。特别是考虑到这种细胞功能,这种蛋白质家族参与了神经元发育、神经系统疾病、病毒感染和自噬等几个过程。然而,FEZ蛋白的核功能也被探索,由于PPI与核蛋白的高含量,FEZ1的表达与Sox2和Hoxb4基因调控和维甲酸信号传导有关。这些最近的发现为研究FEZ蛋白的功能及其参与已经描述的过程开辟了新的途径。本文就FEZ蛋白的进化、结构、相互作用伙伴、功能及其与生理病理过程的关系作一综述。
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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Fasciculation and elongation zeta proteins 1 and 2: From structural flexibility to functional diversity.

Fasciculation and elongation zeta/zygin (FEZ) proteins are a family of hub proteins and share many characteristics like high connectivity in interaction networks, they are involved in several cellular processes, evolve slowly and in general have intrinsically disordered regions. In 1985, unc-76 gene was firstly described and involved in axonal growth in C. elegans, and in 1997 Bloom and Horvitz enrolled also the human homologues genes, FEZ1 and FEZ2, in this process. While nematodes possess one gene (unc-76), mammalians have one more copy (FEZ1 and FEZ2). Several animal models have been used to study FEZ family functions like: C. elegans, D. melanogaster, R. novergicus and human cells. Complementation assays were performed and demonstrated the function conservation between paralogues. Human FEZ1 protein is more studied followed by UNC-76 and FEZ2 proteins, respectively. While FEZ1 and UNC-76 shared interaction partners, FEZ2 evolved and increased the number of protein-protein interactions (PPI) with cytoplasmatic partners. FEZ proteins are implicated in intracellular transport, acting as bivalent cargo transport adaptors in kinesin-mediated movement. Especially in light of this cellular function, this family of proteins has been involved in several processes like neuronal development, neurological disorders, viral infection and autophagy. However, nuclear functions of FEZ proteins have been explored as well, due to high content of PPI with nuclear proteins, correlating FEZ1 expression to Sox2 and Hoxb4 gene regulation and retinoic acid signaling. These recent findings open new avenue to study FEZ proteins functions and its involvement in already described processes. This review intends to reunite aspects of evolution, structure, interaction partners and function of FEZ proteins and correlate them to physiological and pathological processes.

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