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首页> 外文期刊>Cytoskeleton >A FERM domain in a class XIV myosin interacts with actin and tubulin and localizes to the cytoskeleton, phagosomes, and nucleus in Tetrahymena thermophila.
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A FERM domain in a class XIV myosin interacts with actin and tubulin and localizes to the cytoskeleton, phagosomes, and nucleus in Tetrahymena thermophila.

机译:XIV类肌球蛋白中的FERM结构域与肌动蛋白和微管蛋白相互作用,并位于嗜热四膜膜炎的细胞骨架,吞噬体和细胞核中。

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摘要

Previous studies have shown that Myo1(myosin class XIV) localizes to the cytoskeleton and is involved in amitosis of the macronucleus and trafficking of phagosomes. Myo1 contains a FERM domain that could be a site for interaction between Myo1 and the cytoskeleton. Here, we explore the function of FERM by investigating its cytoskeleton binding partners and involvement in localization of Myo1. Alignment of Myo1 FERM with a talin actin-binding sequence, a MAP-2 tubulin-binding sequence, the radixin FERM dimerization motif, and the SV40 nuclear localization sequence (NLS) revealed putative actin- and tubulin-binding sequences, a putative FERM dimerization motif, and NLS-like sequences in both the N-terminal and C-terminal regions of Myo1 FERM. Alignment of Myo1 with an ERM C-terminal motif revealed a similar sequence in the Myo1 motor domain. GFP-FERM and two truncated FERM domains were separately expressed in Tetrahymena. GFP-FERM contained the entire Myo1 FERM. Truncated Myo1 FERM domains contained either the N-terminal or the C-terminal region of FERM and one putative sequence for actin-binding, one for tubulin-binding, a putative dimerization motif, and a NLS-like sequence. Actin antibody coprecipitated GFP-fusion polypeptides and tubulin from lysate of cells expressing GFP-fusions. Cosedimentation assays performed with either whole cell extracts or anti-actin immunoprecipitation pellets revealed that F-actin (independent of ATP) and microtubules cosedimented with GFP-fusion polypeptides. GFP-FERM localized to the cytoskeleton, phagosomes, and nucleus. Truncated GFP-FERM domains localized to phagosomes but not to the cytoskeleton or nucleus.
机译:先前的研究表明,Myo1(肌球蛋白XIV类)定位于细胞骨架,并参与大核的有丝分裂和吞噬体的运输。 Myo1包含一个FERM域,该域可能是Myo1与细胞骨架之间相互作用的位点。在这里,我们通过研究FERM的细胞骨架结合伴侣并参与Myo1的定位来探索其功能。 Myo1 FERM与塔林肌动蛋白结合序列,MAP-2微管蛋白结合序列,radixin FERM二聚化基序和SV40核定位序列(NLS)的比对揭示了假定的肌动蛋白和微管蛋白结合序列,即FERM二聚化。在Myo1 FERM的N端和C端区域中的“ N”基序和NLS样序列。 Myo1与ERM C端基序的比对揭示Myo1电机域中的类似序列。 GFP-FERM和两个截短的FERM结构域分别在四膜虫中表达。 GFP-FERM包含整个Myo1 FERM。截短的Myo1 FERM域包含FERM的N端或C端区域,以及一个假定的肌动蛋白结合序列,一个假定的微管蛋白结合序列,一个假定的二聚化基序和一个NLS样序列。肌动蛋白抗体从表达GFP融合蛋白的细胞裂解物中共沉淀GFP融合多肽和微管蛋白。用全细胞提取物或抗肌动蛋白免疫沉淀沉淀进行的沉降分析表明,F-肌动蛋白(独立于ATP)和微管与GFP融合多肽共沉淀。 GFP-FERM定位于细胞骨架,吞噬体和细胞核。截短的GFP-FERM结构域位于吞噬体,而不位于细胞骨架或细胞核。

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