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1
Phosphorylation on protein kinase C sites inhibits nuclear import of lamin B2.蛋白激酶C位点的磷酸化抑制核纤层蛋白B2的核输入。
J Cell Biol. 1993 Mar;120(6):1293-304. doi: 10.1083/jcb.120.6.1293.
2
p34cdc2 acts as a lamin kinase in fission yeast.p34cdc2在裂殖酵母中作为一种核纤层蛋白激酶发挥作用。
J Cell Biol. 1991 Mar;112(5):797-807. doi: 10.1083/jcb.112.5.797.
3
Identification of novel phosphorylation sites in murine A-type lamins.小鼠 A 型核纤层蛋白中新磷酸化位点的鉴定。
Eur J Biochem. 1993 Apr 15;213(2):659-71. doi: 10.1111/j.1432-1033.1993.tb17806.x.
4
A role for the p34cdc2 kinase and phosphatases in the regulation of phosphorylation and disassembly of lamin B2 during the cell cycle.p34cdc2激酶和磷酸酶在细胞周期中对核纤层蛋白B2磷酸化和去组装的调控作用。
EMBO J. 1991 Apr;10(4):865-75. doi: 10.1002/j.1460-2075.1991.tb08019.x.
5
In vitro disassembly of the nuclear lamina and M phase-specific phosphorylation of lamins by cdc2 kinase.核纤层在体外的解体以及cdc2激酶对核纤层蛋白的M期特异性磷酸化作用。
Cell. 1990 May 18;61(4):591-602. doi: 10.1016/0092-8674(90)90471-p.
6
Functional analysis of phosphorylation sites in human lamin A controlling lamin disassembly, nuclear transport and assembly.人类核纤层蛋白A中控制核纤层蛋白解聚、核运输及组装的磷酸化位点的功能分析
Eur J Cell Biol. 1993 Dec;62(2):237-47.
7
The lamin B receptor of the inner nuclear membrane undergoes mitosis-specific phosphorylation and is a substrate for p34cdc2-type protein kinase.内核膜的核纤层蛋白B受体经历有丝分裂特异性磷酸化,并且是p34cdc2型蛋白激酶的底物。
J Biol Chem. 1992 Sep 25;267(27):19035-8.
8
Identification of nuclear beta II protein kinase C as a mitotic lamin kinase.鉴定核βII型蛋白激酶C为一种有丝分裂核纤层蛋白激酶。
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9
Lamin B is rapidly phosphorylated in lymphocytes after activation of protein kinase C.蛋白激酶C激活后,层粘连蛋白B在淋巴细胞中迅速被磷酸化。
Proc Natl Acad Sci U S A. 1988 Apr;85(7):2279-83. doi: 10.1073/pnas.85.7.2279.
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Disassembly of in vitro formed lamin head-to-tail polymers by CDC2 kinase.通过CDC2激酶拆解体外形成的核纤层蛋白头对头聚合物。
EMBO J. 1991 Jun;10(6):1535-44. doi: 10.1002/j.1460-2075.1991.tb07673.x.

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Front Cell Dev Biol. 2022 May 17;10:864191. doi: 10.3389/fcell.2022.864191. eCollection 2022.
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Chemical Decorations of "MARs" Residents in Orchestrating Eukaryotic Gene Regulation.“MARs”区域的化学修饰在真核基因调控中的作用
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Regulation of lamin properties and functions: does phosphorylation do it all?核纤层蛋白特性与功能的调控:磷酸化能起到全部作用吗?
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Lamins at the crossroads of mechanosignaling.在机械信号转导的十字路口的层粘连蛋白。
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Numb-dependent integration of pre-TCR and p53 function in T-cell precursor development.前T细胞受体与p53功能在T细胞前体发育中的Numb依赖性整合。
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cPKC regulates interphase nuclear size during Xenopus development.在非洲爪蟾发育过程中,传统蛋白激酶C调节间期细胞核大小。
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9
The intracellular fate of zonula occludens 2 is regulated by the phosphorylation of SR repeats and the phosphorylation/O-GlcNAcylation of S257.封闭带蛋白 2 的细胞内命运受 SR 重复序列磷酸化和 S257 的磷酸化/O-连接的 N-乙酰葡萄糖胺修饰调控。
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10
Partners and post-translational modifications of nuclear lamins.核纤层蛋白的结合伙伴及翻译后修饰
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本文引用的文献

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The nuclear envelope lamina is reversibly depolymerized during mitosis.核膜层在有丝分裂期间可逆地解聚。
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2
Heterogeneous binding of high mobility group chromosomal proteins to nuclei.高迁移率族染色体蛋白与细胞核的异质性结合。
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Phosphorylation of the nuclear lamins during interphase and mitosis.核纤层蛋白在间期和有丝分裂期间的磷酸化。
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6
The nuclear lamin protein family in higher vertebrates. Identification of quantitatively minor lamin proteins by monoclonal antibodies.高等脊椎动物中的核纤层蛋白家族。通过单克隆抗体鉴定定量较少的核纤层蛋白。
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Biogenesis of the nuclear lamina: in vivo synthesis and processing of nuclear protein precursors.核纤层的生物发生:核蛋白前体的体内合成与加工
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8
cDNA sequencing of nuclear lamins A and C reveals primary and secondary structural homology to intermediate filament proteins.核纤层蛋白A和C的cDNA测序揭示了其与中间丝蛋白在一级和二级结构上的同源性。
Proc Natl Acad Sci U S A. 1986 Sep;83(17):6450-4. doi: 10.1073/pnas.83.17.6450.
9
Homologies in both primary and secondary structure between nuclear envelope and intermediate filament proteins.核膜蛋白与中间丝蛋白在一级结构和二级结构上均存在同源性。
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10
A new lamin in Xenopus somatic tissues displays strong homology to human lamin A.非洲爪蟾体细胞组织中的一种新型核纤层蛋白与人类核纤层蛋白A具有高度同源性。
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蛋白激酶C位点的磷酸化抑制核纤层蛋白B2的核输入。

Phosphorylation on protein kinase C sites inhibits nuclear import of lamin B2.

作者信息

Hennekes H, Peter M, Weber K, Nigg E A

机构信息

Swiss Institute for Experimental Cancer Research (ISREC), Epalinges.

出版信息

J Cell Biol. 1993 Mar;120(6):1293-304. doi: 10.1083/jcb.120.6.1293.

DOI:10.1083/jcb.120.6.1293
PMID:8449977
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2119761/
Abstract

The nuclear lamina is a karyoskeletal structure at the nucleoplasmic surface of the inner nuclear membrane. Its assembly state is regulated by phosphorylation of the intermediate filament type lamin proteins. Strong evidence has been obtained for a causal link between phosphorylation of lamins by the p34cdc2 protein kinase and disassembly of the nuclear lamina during mitosis. In contrast, no information is currently available on the role of lamin phosphorylation during interphase of the cell cycle. Here, we have identified four protein kinase C phosphorylation sites in purified chicken lamin B2 as serines 400, 404, 410, and 411. In vivo, the tryptic peptide containing serines 400 and 404 is phosphorylated throughout interphase, whereas serines 410 and 411 become phosphorylated specifically in response to activation of protein kinase C by phorbol ester. Prompted by the close proximity of serines 410/411 to the nuclear localization signal of lamin B2, we have studied the influence of phosphorylation of these residues on nuclear transport. Using an in vitro assay, we show that phosphorylation of lamin B2 by protein kinase C strongly inhibits transport to the nucleus. Moreover, phorbol ester treatment of intact cells leads to a substantial reduction of the rate of nuclear import of newly synthesized lamin B2 in vivo. These findings have implications for the dynamic structure of the nuclear lamina, and they suggest that the modulation of nuclear transport rates by cytoplasmic phosphorylation may represent a general mechanism for regulating nuclear activities.

摘要

核纤层是内核膜核质表面的一种核骨架结构。其组装状态受中间丝类型核纤层蛋白磷酸化的调节。已有确凿证据表明,p34cdc2蛋白激酶使核纤层蛋白磷酸化与有丝分裂期间核纤层的解体之间存在因果联系。相比之下,目前尚无关于细胞周期间期核纤层蛋白磷酸化作用的信息。在此,我们在纯化的鸡核纤层蛋白B2中鉴定出四个蛋白激酶C磷酸化位点,即丝氨酸400、404、410和411。在体内,含有丝氨酸400和404的胰蛋白酶肽在整个间期都被磷酸化,而丝氨酸410和411则在佛波酯激活蛋白激酶C后特异性地被磷酸化。由于丝氨酸410/411紧邻核纤层蛋白B2的核定位信号,我们研究了这些残基磷酸化对核转运的影响。通过体外试验,我们发现蛋白激酶C使核纤层蛋白B2磷酸化会强烈抑制其向细胞核的转运。此外,用佛波酯处理完整细胞会导致体内新合成的核纤层蛋白B2的核输入速率大幅降低。这些发现对核纤层的动态结构具有启示意义,并且表明细胞质磷酸化对核转运速率的调节可能是一种调节核活动的普遍机制。