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表达野生型和突变型 EGFP 标记 cDNA 后 Mayven 的亚细胞定位。

Subcellular localization of Mayven following expression of wild type and mutant EGFP tagged cDNAs.

机构信息

Division of Clinical Neuroscience, Glasgow Biomedical Research Centre, Room 4B17, 120 University Place, University of Glasgow, Glasgow G12 8TA, UK.

出版信息

BMC Neurosci. 2010 May 26;11:63. doi: 10.1186/1471-2202-11-63.

Abstract

BACKGROUND

Process formation by glial cells is crucial to their function. Mayven, an actin binding, multi-domain polypeptide, and member of the BTB-BACK-Kelch family have been shown to be important in oligodendrocyte process extension. To assess the role of Mayven in neural cell process extension we have tracked the subcellular distribution of exogenous Mayven following expression of a rat Mayven -EGFP cDNA in a variety of neural cell backgrounds and specifically in OEC tranfectants following drug treatment to disrupt the integrity of the cytoskeleton. A comparison was made between the subcellular localization following transient transfection of OECs with full-length Mayven cDNA and a series of mutant domain constructs.

RESULTS

The subcellular location of Mayven in OEC transfectants showed a characteristic distribution with intense foci of staining towards the process tips corresponding to regions of accumulated Mayven overlapping in part with lammelipodial actin and was absent from the filipodia and the outer membrane. This signature pattern was also observed in Schwann cells, Oli-Neu cells, astrocytes and the neuroblastoma cell line B104 transfectants and resembled the exogenous and endogenous Mayven distribution in oligodendrocytes. This contrasted with the localization pattern in non-neural cells. There was a re-localization of Mayven in OEC transfectants following drug treatment to challenge the integrity of the actin cytoskeleton while breakdown of the microtubular component had no discernible impact on the accumulation of Mayven in the process tips. Deletion of the first three amino acids of the SH3 motif of the putative Fyn Kinase binding domain at the amino terminus significantly compromised this signature pattern as did the removal of the last Kelch repeat unit of six unit Kelch domain comprising the carboxyl terminus. In addition, there was a reduction in process length in mutant transfectants. Co-expression studies with a haemagglutinin (HA) tagged wild type Mayven cDNA and EGFP tagged mutant cDNAs suggested a homomeric interaction mediated by the BTB/POZ domain.

CONCLUSIONS

Exogenous Mayven is transported to the lamellipodia in neural transfectants associating with the actin cytoskeletal network. In addition to the importance of the internal BTB/POZ domain, this subcellular distribution pattern is dependent on the presence of an intact amino and carboxyl terminus.

摘要

背景

神经胶质细胞的突起形成对于其功能至关重要。Mayven 是一种肌动蛋白结合的、具有多种结构域的多肽,是 BTB-BACK-Kelch 家族的成员,它在少突胶质细胞突起延伸中起着重要作用。为了评估 Mayven 在神经细胞突起延伸中的作用,我们在各种神经细胞背景下,特别是在 OEC 转染细胞中,通过药物处理破坏细胞骨架的完整性后,追踪外源性 Mayven 的亚细胞分布,该药物处理会干扰细胞骨架的完整性。我们将全长 Mayven cDNA 瞬时转染 OEC 后与一系列突变结构域构建体的亚细胞定位进行了比较。

结果

OEC 转染细胞中 Mayven 的亚细胞定位显示出一种特征性分布,在突起尖端有强烈的染色焦点,与积累的 Mayven 部分重叠的部分重叠,与 lamellipodial 肌动蛋白重叠,并从丝状伪足和外膜中缺失。这种特征性模式也在施万细胞、Oli-Neu 细胞、星形胶质细胞和神经母细胞瘤细胞系 B104 转染细胞中观察到,类似于少突胶质细胞中外源和内源 Mayven 的分布。这与非神经细胞的定位模式形成对比。在用药物处理以挑战肌动蛋白细胞骨架完整性后,OEC 转染细胞中的 Mayven 发生了再定位,而微管成分的破坏对 Mayven 在突起尖端的积累没有明显影响。在氨基末端的假定 Fyn 激酶结合结构域的 SH3 基序的前三个氨基酸缺失显著削弱了这种特征性模式,羧基末端的六个重复单位的 Kelch 结构域缺失最后一个 Kelch 重复单元也是如此。此外,突变转染细胞的突起长度缩短。与 HA 标记的野生型 Mayven cDNA 和 EGFP 标记的突变 cDNA 的共表达研究表明,这种同源相互作用是由 BTB/POZ 结构域介导的。

结论

外源性 Mayven 被转运到神经转染细胞的 lamellipodia 中,与肌动蛋白细胞骨架网络相关。除了内部 BTB/POZ 结构域的重要性之外,这种亚细胞分布模式还依赖于完整的氨基和羧基末端。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e762/2901378/5c9425f5e956/1471-2202-11-63-1.jpg

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