内在紊乱区域的磷酸化调节Neurogenin2的活性。

Q2 Biochemistry, Genetics and Molecular Biology
Gary S McDowell, Christopher J Hindley, Guy Lippens, Isabelle Landrieu, Anna Philpott
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引用次数: 19

摘要

背景:神经元分化在很大程度上受基本的Helix-Loop-Helix (bHLH)前神经转录因子的控制,这些转录因子在胚胎神经系统的发育过程中起着关键作用。除了对其表达的明确调控外,越来越多的证据表明,原膜蛋白活性的额外翻译后调控正在出现。特别令人感兴趣的是bHLH前神经因子神经原蛋白2 (Ngn2),它在中枢神经系统的几个区域协调从神经祖细胞到分化神经元的进展。先前的研究已经证明,Ngn2蛋白在丝氨酸-脯氨酸(SP)位点的细胞周期依赖性多位点磷酸化对其神经元分化活性的调节具有关键作用,尽管该蛋白不同区域磷酸化的潜在结构和功能后果尚不清楚。结果:在这里,我们描述了Ngn2特定区域的磷酸化对Ngn2蛋白稳定性及其在发育胚胎中的神经元分化活性的作用,清楚地表明SP位点的位置不如可用于控制Ngn2活性的SP位点的数量重要。我们还提供了结构证据,证明Ngn2包含大的、内在无序的区域,这些区域会被细胞周期蛋白依赖性激酶(cdks)磷酸化。结论:Ngn2的磷酸化发生在保守的碱性Helix-Loop-Helix结构域的N端和c端区域。虽然这些磷酸化事件不会改变Ngn2的内在稳定性,但多个位点的磷酸化会限制其在体内驱动神经元分化的能力。据预测,Ngn2的磷酸化区域是内在无序的,这些内在无序区域的cdk依赖性磷酸化有助于Ngn2调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phosphorylation in intrinsically disordered regions regulates the activity of Neurogenin2.

Phosphorylation in intrinsically disordered regions regulates the activity of Neurogenin2.

Phosphorylation in intrinsically disordered regions regulates the activity of Neurogenin2.

Phosphorylation in intrinsically disordered regions regulates the activity of Neurogenin2.

Background: Neuronal differentiation is largely under the control of basic Helix-Loop-Helix (bHLH) proneural transcription factors that play key roles during development of the embryonic nervous system. In addition to well-characterised regulation of their expression, increasing evidence is emerging for additional post-translational regulation of proneural protein activity. Of particular interest is the bHLH proneural factor Neurogenin2 (Ngn2), which orchestrates progression from neural progenitor to differentiated neuron in several regions of the central nervous system. Previous studies have demonstrated a key role for cell cycle-dependent multi-site phosphorylation of Ngn2 protein at Serine-Proline (SP) sites for regulation of its neuronal differentiation activity, although the potential structural and functional consequences of phosphorylation at different regions of the protein are unclear.

Results: Here we characterise the role of phosphorylation of specific regions of Ngn2 on the stability of Ngn2 protein and on its neuronal differentiation activity in vivo in the developing embryo, demonstrating clearly that the location of SP sites is less important than the number of SP sites available for control of Ngn2 activity in vivo. We also provide structural evidence that Ngn2 contains large, intrinsically disordered regions that undergo phosphorylation by cyclin-dependent kinases (cdks).

Conclusions: Phosphorylation of Ngn2 occurs in both the N- and C-terminal regions, either side of the conserved basic Helix-Loop-Helix domain. While these phosphorylation events do not change the intrinsic stability of Ngn2, phosphorylation on multiple sites acts to limit its ability to drive neuronal differentiation in vivo. Phosphorylated regions of Ngn2 are predicted to be intrinsically disordered and cdk-dependent phosphorylation of these intrinsically disordered regions contributes to Ngn2 regulation.

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来源期刊
BMC Biochemistry
BMC Biochemistry BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
3 months
期刊介绍: BMC Biochemistry is an open access journal publishing original peer-reviewed research articles in all aspects of biochemical processes, including the structure, function and dynamics of metabolic pathways, supramolecular complexes, enzymes, proteins, nucleic acids and small molecular components of organelles, cells and tissues. BMC Biochemistry (ISSN 1471-2091) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record, Thomson Reuters (ISI) and Google Scholar.
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