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COPI coatomer subunit α-COP interacts with the RNA binding protein Nucleolin via a C-terminal dilysine motif.COP 衣被复合体亚基 α-COP 通过一个 C 末端双赖氨酸基序与 RNA 结合蛋白核仁蛋白相互作用。
Hum Mol Genet. 2023 Nov 17;32(23):3263-3275. doi: 10.1093/hmg/ddad140.
2
Dilysine motifs in exon 2b of SMN protein mediate binding to the COPI vesicle protein α-COP and neurite outgrowth in a cell culture model of spinal muscular atrophy.SMN 蛋白外显子 2b 中的二赖氨酸基序介导与 COPI 囊泡蛋白 α-COP 的结合,并在脊髓性肌萎缩症的细胞培养模型中促进神经突生长。
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J Med Chem. 2022 Aug 11;65(15):10161-10182. doi: 10.1021/acs.jmedchem.2c00649. Epub 2022 Jul 21.
2
Nucleolin loss of function leads to aberrant Fibroblast Growth Factor signaling and craniofacial anomalies.核仁素功能丧失导致成纤维细胞生长因子信号异常和颅面异常。
Development. 2022 Jun 15;149(12). doi: 10.1242/dev.200349. Epub 2022 Jun 28.
3
Impaired dynamic interaction of axonal endoplasmic reticulum and ribosomes contributes to defective stimulus-response in spinal muscular atrophy.轴突内质网和核糖体的动态相互作用受损导致脊髓性肌萎缩症的刺激反应缺陷。
Transl Neurodegener. 2022 Jun 2;11(1):31. doi: 10.1186/s40035-022-00304-2.
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Intra-axonal translation of Khsrp mRNA slows axon regeneration by destabilizing localized mRNAs.Khsrp mRNA 的轴内翻译通过破坏局部 mRNA 来减缓轴突再生。
Nucleic Acids Res. 2022 Jun 10;50(10):5772-5792. doi: 10.1093/nar/gkac337.
5
Deficiency in coatomer complex I causes aberrant activation of STING signalling.内披蛋白复合物 I 缺乏导致 STING 信号通路异常激活。
Nat Commun. 2022 Apr 28;13(1):2321. doi: 10.1038/s41467-022-29946-6.
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A novel role for nucleolin in splice site selection.核仁素在剪接位点选择中的新作用。
RNA Biol. 2022;19(1):333-352. doi: 10.1080/15476286.2021.2020455. Epub 2021 Dec 31.
7
Fine-Tuning of mTOR mRNA and Nucleolin Complexes by SMN.SMN 对 mTOR mRNA 和核仁素复合物的微调。
Cells. 2021 Nov 4;10(11):3015. doi: 10.3390/cells10113015.
8
The glycine arginine-rich domain of the RNA-binding protein nucleolin regulates its subcellular localization.核仁素的富含甘氨酸和精氨酸结构域调节其亚细胞定位。
EMBO J. 2021 Oct 18;40(20):e107158. doi: 10.15252/embj.2020107158. Epub 2021 Sep 13.
9
Augmentation of Stimulator of Interferon Genes-Induced Type I Interferon Production in COPA Syndrome.COPA 综合征中干扰素基因刺激物诱导的 I 型干扰素产生的增强。
Arthritis Rheumatol. 2021 Nov;73(11):2105-2115. doi: 10.1002/art.41790.
10
Mutations in the COPI coatomer subunit α-COP induce release of Aβ-42 and amyloid precursor protein intracellular domain and increase tau oligomerization and release.α-COP 衣被复合体亚基突变可诱导 Aβ-42 和淀粉样前体蛋白细胞内域的释放,并增加 tau 寡聚化和释放。
Neurobiol Aging. 2021 May;101:57-69. doi: 10.1016/j.neurobiolaging.2021.01.003. Epub 2021 Jan 13.

COP 衣被复合体亚基 α-COP 通过一个 C 末端双赖氨酸基序与 RNA 结合蛋白核仁蛋白相互作用。

COPI coatomer subunit α-COP interacts with the RNA binding protein Nucleolin via a C-terminal dilysine motif.

机构信息

Dermatology, Indiana University School of Medicine, 545 Barnhill Drive, Emerson Hall 139, Indianapolis, IN 46202, United States.

Indiana University School of Medicine, 340 West 10th St, Indianapolis, IN 46202, United States.

出版信息

Hum Mol Genet. 2023 Nov 17;32(23):3263-3275. doi: 10.1093/hmg/ddad140.

DOI:10.1093/hmg/ddad140
PMID:37658769
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10656708/
Abstract

The COPI coatomer subunit α-COP has been shown to co-precipitate mRNA in multiple settings, but it was unclear whether the interaction with mRNA was direct or mediated by interaction with an adapter protein. The COPI complex often interacts with proteins via C-terminal dilysine domains. A search for candidate RNA binding proteins with C-terminal dilysine motifs yielded Nucleolin, which terminates in a KKxKxx sequence. This protein was an especially intriguing candidate as it has been identified as an interacting partner for Survival Motor Neuron protein (SMN). Loss of SMN causes the neurodegenerative disease Spinal Muscular Atrophy. We have previously shown that SMN and α-COP interact and co-migrate in axons, and that overexpression of α-COP reduced phenotypic severity in cell culture and animal models of SMA. We show here that in an mRNA independent manner, endogenous Nucleolin co-precipitates endogenous α-COP and ε-COP but not β-COP which may reflect an interaction with the so-called B-subcomplex rather a complete COPI heptamer. The ability of Nucleolin to bind to α-COP requires the presence of the C-terminal KKxKxx domain of Nucleolin. Furthermore, we have generated a point mutant in the WD40 domain of α-COP which eliminates its ability to co-precipitate Nucleolin but does not interfere with precipitation of partners mediated by non-KKxKxx motifs such as the kainate receptor subunit 2. We propose that via interaction between the C-terminal dilysine motif of Nucleolin and the WD40 domain of α-COP, Nucleolin acts an adaptor to allow α-COP to interact with a population of mRNA.

摘要

已证实 COPI 衣被复合体亚基α-COP 可在多种环境下与 mRNA 共沉淀,但尚不清楚这种与 mRNA 的相互作用是直接的,还是通过与衔接蛋白的相互作用介导的。COPI 复合物通常通过 C 末端双赖氨酸结构域与蛋白质相互作用。通过搜索具有 C 末端双赖氨酸基序的候选 RNA 结合蛋白,得到了核仁蛋白(Nucleolin),它以 KKxKxx 序列结尾。该蛋白是一个特别有趣的候选蛋白,因为它已被鉴定为存活运动神经元蛋白(SMN)的相互作用伙伴。SMN 的缺失会导致神经退行性疾病——脊髓性肌萎缩症。我们之前已经表明,SMN 和 α-COP 在轴突中相互作用并共同迁移,并且 α-COP 的过表达可降低细胞培养和 SMA 动物模型中的表型严重程度。我们在此表明,以与 mRNA 无关的方式,内源性核仁蛋白可与内源性 α-COP 和 ε-COP 共沉淀,但不能与β-COP 共沉淀,这可能反映了与所谓的 B 亚基复合物的相互作用,而不是完整的 COPI 七聚体。核仁蛋白与 α-COP 结合的能力需要核仁蛋白 C 末端 KKxKxx 结构域的存在。此外,我们已经在 α-COP 的 WD40 结构域中生成了一个点突变,该突变消除了其与核仁蛋白共沉淀的能力,但不干扰通过非 KKxKxx 基序(如 kainate 受体亚基 2)介导的伴侣沉淀。我们提出,通过核仁蛋白 C 末端双赖氨酸基序与 α-COP 的 WD40 结构域之间的相互作用,核仁蛋白作为衔接蛋白,使 α-COP 能够与一群 mRNA 相互作用。