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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The P-loop region of Schlafen 3 acts within the cytosol to induce differentiation of human Caco-2 intestinal epithelial cells
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The P-loop region of Schlafen 3 acts within the cytosol to induce differentiation of human Caco-2 intestinal epithelial cells

机译:Schlafen 3的P环区域在细胞质中起作用,诱导人Caco-2肠上皮细胞分化

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Schlafen 3 (Slfn3) mediates rodent enterocyte differentiation in vitro and in vivo, required for intestinal function. Little is known about Schlafen protein structure-function relationships. To define the Slfn3 domain that promotes differentiation, we studied villin and sucrase isomaltase (SI) promoter activity in Slfn3-null human Caco-2BBE cells transfected with full-length rat Slfn3 DNA or truncated constructs. Confocal microscopy and Western blots showed that Slfn3 is predominantly cytosolic. Villin promoter activity, increased by wild type Slfn3, was further enhanced by adding a nuclear exclusion sequence, suggesting that Slfn3 does not affect transcription by direct nuclear action. We therefore sought to dissect the region in Slfn3 stimulating promoter activity. Since examination of the Slfn3 N-terminal region revealed sequences similar to both an aminopeptidase (App) and a divergent P-loop resembling those in NTPases, we initially divided Slfn3 into an N-terminal domain containing the App and P-loop regions, and a C-terminal region. Only the N-terminal construct stimulated promoter activity. Further truncation indicated that both the App and the smaller P-loop constructs enhanced promoter activity similarly to the N-terminal sequence. Point mutations within the N-terminal region (R128L, altering a critical active site residue in the App domain, and L212D, conserved in Schlafens but variable in P-loop proteins) did not affect activity. These results show that Slfn3 acts in the cytosol to trigger a secondary signal cascade that elicits differentiation marker expression and narrows the active domain to the third of the Slfn3 sequence homologous to P-loop NTPases, a first step in understanding its mechanism of action.
机译:Schlafen 3(Slfn3)介导肠道功能所需的体外和体内啮齿动物肠细胞分化。关于Schlafen蛋白质结构-功能关系知之甚少。为了定义促进分化的Slfn3结构域,我们研究了用全长大鼠Slfn3 DNA或截短的构建体转染的Slfn3空人类Caco-2BBE细胞中的villin和蔗糖异麦芽糖酶(SI)启动子活性。共聚焦显微镜和蛋白质印迹显示Slfn3主要是胞质的。野生型Slfn3增加的Villin启动子活性通过添加核排斥序列而进一步增强,表明Slfn3不通过直接核作用影响转录。因此,我们试图剖析Slfn3刺激启动子活性的区域。由于对Slfn3 N末端区域的检查揭示了类似于氨肽酶(App)和类似于NTPases的发散性P环的序列,因此我们最初将Slfn3分为一个包含App和P环区域的N末端域,并且C末端区域。仅N末端构建体刺激启动子活性。进一步的截短表明,App和较小的P-环构建体均类似于N-末端序列增强了启动子活性。 N末端区域内的点突变(R128L,改变了App域中的关键活性位点残基,L212D,在Schlafens中保守但在P-loop蛋白中可变)不影响活性。这些结果表明,Slfn3在细胞质中起作用,触发次级信号级联反应,该信号级联引发分化标志物的表达,并将活性域缩小到与P环NTPases同源的Slfn3序列的三分之一,这是了解其作用机理的第一步。

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