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Overexpression of p49/STRAP alters cellular cytoskeletal structure and gross anatomy in mice

机译:p49 / STRAP的过表达改变小鼠细胞的细胞骨架结构和整体解剖

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Background The protein p49/STRAP (SRFBP1) is a transcription cofactor of serum response factor (SRF) which regulates cytoskeletal and muscle-specific genes. Results Two conserved domains were found in the p49/STRAP protein. The SRF-binding domain was at its N-terminus and was highly conserved among mammalian species, xenopus and zebrafish. A BUD22 domain was found at its C-terminus in three sequence databases. The BUD22 domain was conserved among mammalian p49/STRAP proteins, and yeast cellular morphogenesis proteins, which is involved in ribosome biogenesis that affects growth rate and cell size. The endogenous p49/SRAP protein was localized mainly in the nucleus but also widely distributed in the cytoplasm, and was in close proximity to the actin. Transfected GFP-p49/STRAP protein co-localized with nucleolin within the nucleolus. Overexpression of p49/STRAP reduced actin content in cultured cells and resulted in smaller cell size versus control cells. Increased expression of p49/STRAP in transgenic mice resulted in newborns with malformations, which included asymmetric abdominal and thoracic cavities, and substantial changes in cardiac morphology. p49/STRAP altered the expression of certain muscle-specific genes, including that of the SRF gene, which is a key regulator of cardiac genes at the developmental, structural and maintenance level and has two SRE binding sites. Conclusions Since p49/STRAP is a co-factor of SRF, our data suggest that p49/STRAP likely regulates cell size and morphology through SRF target genes. The function of its BUD22 domain warrants further investigation. The observed increase in p49/STRAP expression during cellular aging may contribute to observed morphological changes in senescence.
机译:背景技术p49 / STRAP蛋白(SRFBP1)是血清反应因子(SRF)的转录辅因子,可调节细胞骨架和肌肉特异性基因。结果在p49 / STRAP蛋白中发现了两个保守结构域。 SRF结合域位于其N端,在哺乳动物,非洲爪蟾和斑马鱼中高度保守。在三个序列数据库的C末端发现了BUD22结构域。 BUD22结构域在哺乳动物p49 / STRAP蛋白和酵母细胞形态发生蛋白之间保守,后者参与影响生长速度和细胞大小的核糖体生物发生。内源性p49 / SRAP蛋白主要位于细胞核中,但也广泛分布于细胞质中,并且与肌动蛋白非常接近。转染的GFP-p49 / STRAP蛋白与核仁中的核仁素共定位。与对照细胞相比,p49 / STRAP的过表达降低了培养细胞中肌动蛋白的含量,并导致较小的细胞大小。 p49 / STRAP在转基因小鼠中表达的增加导致新生儿畸形,其中包括不对称的腹腔和胸腔,以及心脏形态的实质性变化。 p49 / STRAP改变了某些肌肉特异性基因的表达,包括SRF基因的表达,SRF基因在发育,结构和维持水平上是心脏基因的关键调节因子,具有两个SRE结合位点。结论由于p49 / STRAP是SRF的辅助因子,因此我们的数据表明p49 / STRAP可能通过SRF靶基因调节细胞大小和形态。其BUD22域的功能值得进一步研究。在细胞衰老过程中观察到的p49 / STRAP表达的增加可能有助于观察到衰老的形态变化。

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