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果蝇黑腹果蝇核纤层蛋白在间期和有丝分裂期间的体内磷酸化。

In vivo phosphorylation of Drosophila melanogaster nuclear lamins during both interphase and mitosis.

作者信息

Rzepecki Ryszard, Fisher Paul A

机构信息

Institute of Biochemistry and Molecular Biology, University of Wrocław, Przybyszewskiego 63/77, 51-148 Wrocław, Poland.

出版信息

Cell Mol Biol Lett. 2002;7(3):859-76.

Abstract

To study phosphorylation of D. melanogaster nuclear lamins in vivo, we used Kc tissue culture cells. Kc cells contain products of both lamin genes, the lamin Dm0 gene encoding constitutive polypeptides expressed in almost all cell types and the developmentally regulated lamin C gene. We grew Kc cells in low phosphate medium and labelled them with (32P(H3PO4. To obtain mitotic cells we used vinblastine to arrest cells in metaphase. Cells were collected, washed, lysed and resultant extracts fractionated in the presence of protein phosphatase inhibitors. D. melanogaster proteins were then denatured by boiling in SDS plus DTT, followed by immunoaffinity chromatography and SDS-PAGE purification. As anticipated, we found that a CNBr fragment derived from the N-terminal part of lamin Dm0-derivatives (amino acid residues 2-158; fragment A) was phosphorylated during both interphase and mitosis. Interphase but not mitotic phosphorylation was found on an internal CNBr fragment (derived from the end of the central rod domain and the first part of the C-terminal lamin tail; amino acid residues 385-548; fragment D). Interphase only phosphorylation was also detected on another CNBr fragment derived from the extreme C-terminal portion of lamin Dm0-derivatives (amino acid residues 549-622; fragment E). To supplement these data, we used 2-D tryptic peptide mapping followed by phosphorImager analysis. We routinely detected at least seven 'spots' derived from interphase lamins but only a single mitotic lamin phosphopeptide.

摘要

为了在体内研究黑腹果蝇核纤层蛋白的磷酸化,我们使用了Kc组织培养细胞。Kc细胞含有两种核纤层蛋白基因的产物,即编码在几乎所有细胞类型中都表达的组成型多肽的核纤层蛋白Dm0基因,以及受发育调控的核纤层蛋白C基因。我们在低磷酸盐培养基中培养Kc细胞,并用(32P)(H3PO4)对其进行标记。为了获得有丝分裂细胞,我们使用长春花碱将细胞阻滞在中期。收集细胞,洗涤,裂解,然后在存在蛋白磷酸酶抑制剂的情况下对所得提取物进行分级分离。然后通过在SDS加DTT中煮沸使黑腹果蝇蛋白变性,接着进行免疫亲和层析和SDS-PAGE纯化。正如预期的那样,我们发现源自核纤层蛋白Dm0衍生物N端部分的一个CNBr片段(氨基酸残基2 - 158;片段A)在间期和有丝分裂期间都被磷酸化。在一个内部CNBr片段(源自中央杆状结构域末端和C端核纤层蛋白尾部的第一部分;氨基酸残基385 - 548;片段D)上发现了间期而非有丝分裂期的磷酸化。在源自核纤层蛋白Dm0衍生物极端C端部分的另一个CNBr片段(氨基酸残基549 - 622;片段E)上也检测到了仅在间期的磷酸化。为了补充这些数据,我们使用二维胰蛋白酶肽图谱分析,随后进行磷成像分析。我们常规检测到至少七个源自间期核纤层蛋白的“斑点”,但只有一个有丝分裂期核纤层蛋白磷酸肽。

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