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Identification and functional analysis of Joka2 a tobacco member of the family of selective autophagy cargo receptors

机译:选择性自噬货物受体家族烟草成员Joka2的鉴定和功能分析

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摘要

Two main mechanisms of protein turnover exist in eukaryotic cells: the ubiquitin-proteasome system and the autophagy-lysosomal pathway. Autophagy is an emerging important constituent of many physiological and pathological processes, such as response to nutrient deficiency, programmed cell death and innate immune response. In mammalian cells the selectivity of autophagy is ensured by the presence of cargo receptors, such as p62/SQSTM1 and NBR1, responsible for sequestration of the ubiquitinated proteins. In plants no selective cargo receptors have been identified yet. The present report indicates that structural and functional homologs of p62 and NBR1 proteins exist in plants. The tobacco protein, named Joka2, has been identified in yeast two-hybrid search as a binding partner of a small coiled-coil protein, a member of UP9/LSU family of unknown function, encoded by the UP9C gene strongly and specifically induced during sulfur deficiency. The typical domains of p62 and NBR1 are conserved in Joka2. Similarly to p62, Joka2-YFP has dual localization (cytosolic speckles and the nucleus); it forms homodimers and interacts with a member of the ATG8 family. Increased expression of Joka2 and ATG8f was observed in roots of tobacco plants grown for two days in nutrient-deficient conditions. Constitutive ectopic expression of Joka2-YFP in tobacco resulted in attenuated response (manifested by lesser yellowing of the leaves) to nutrient deficiency. In conclusion, Joka2, and presumably the process of selective autophagy, might constitute an important part of plant response to environmental stresses.
机译:真核细胞存在两种主要的蛋白质更新机制:泛素-蛋白酶体系统和自噬-溶酶体途径。自噬是许多生理和病理过程中新兴的重要组成部分,例如对营养缺乏症的反应,程序性细胞死亡和先天免疫反应。在哺乳动物细胞中,自噬的选择性可通过负责泛素化蛋白螯合的货物受体(例如p62 / SQSTM1和NBR1)来确保。在植物中,尚未发现选择性的货物受体。本报告表明在植物中存在p62和NBR1蛋白的结构和功能同源物。烟草蛋白,名为Joka2,已在酵母两杂交搜索中被鉴定为小卷曲螺旋蛋白的结合伴侣,螺旋小螺旋蛋白是功能未知的UP9 / LSU家族的成员,由UP9C基因编码,在硫磺期间强烈强烈诱导不足。 pka和NBR1的典型结构域在Joka2中是保守的。与p62相似,Joka2-YFP具有双重定位(胞浆斑点和细胞核)。它形成同型二聚体并与ATG8家族的成员相互作用。在营养不足的条件下生长两天的烟草植物的根中观察到Joka2和ATG8f的表达增加。烟草中Joka2-YFP的组成型异位表达导致对营养缺乏的减弱的响应(表现为较少的叶片发黄)。总之,Joka2,可能是选择性自噬的过程,可能构成了植物对环境胁迫的重要反应。

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