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转录谱分析和神经滑菇 COT-1 途径组件 GUL-1 的定位。

Transcriptional profiling and localization of GUL-1, a COT-1 pathway component, in Neurospora crassa.

机构信息

Department of Plant Pathology and Microbiology, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 761001, Israel.

Plant & Microbial Biology, University of California, Berkeley, Berkeley, CA 94720-3102, USA.

出版信息

Fungal Genet Biol. 2019 May;126:1-11. doi: 10.1016/j.fgb.2019.01.010. Epub 2019 Feb 4.

Abstract

Impairment of theNeurospora crassaCOT-1 kinase results in defects in hyphal polarity. Some of these effects are partially suppressed by inactivation of gul-1 (encoding an mRNA-binding protein involved in translational regulation). Here, we report on the transcriptional profiling of cot-1 inactivation and demonstrate that gul-1 affects transcript abundance of multiple genes in the COT-1 pathway, including processes such as cell wall remodeling, nitrogen and amino acid metabolism. The GUL-1 protein itself was found to be distributed within the entire hyphal cell, along with a clear presence of aggregates that traffic within the cytoplasm. Live imaging of GUL-1-GFP demonstrated that GUL-1 transport is microtubule-dependent. Cellular stress, as imposed by the presence of the cell wall biosynthesis inhibitor Nikkomycin Z or by nitrogen limitation, resulted in a 2-3-fold increase of GUL-1 aggregate association with nuclei. Taken together, this study demonstrates that GUL-1 affects multiple processes, its function is stress-related and linked with cellular traffic and nuclear association.

摘要

糙皮侧耳 Cot-1 激酶的失活导致菌丝极性缺陷。这些影响中的一些部分被 gul-1(编码一种参与翻译调控的 mRNA 结合蛋白)的失活所抑制。在这里,我们报告了 cot-1 失活的转录谱分析,并证明 gul-1 影响 Cot-1 途径中多个基因的转录丰度,包括细胞壁重塑、氮和氨基酸代谢等过程。发现 GUL-1 蛋白本身分布在整个菌丝细胞中,同时存在明显的细胞质内运输的聚集物。GUL-1-GFP 的活体成像表明 GUL-1 运输依赖于微管。细胞应激,如细胞壁生物合成抑制剂 Nikkomycin Z 的存在或氮限制,导致 GUL-1 聚集物与核的关联增加 2-3 倍。总之,这项研究表明,GUL-1 影响多个过程,其功能与应激相关,并与细胞运输和核关联有关。

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