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RCAN3, a novel calcineurin inhibitor that down-regulates NFAT-dependent cytokine gene expression

机译:RCAN3,新型钙调神经磷酸酶抑制剂,下调NFAT依赖性细胞因子基因的表达

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摘要

The regulators of calcineurin (RCAN) proteins, previously known as calcipressins, have been considered to be a well conserved family from yeast to human based on the conservation of their FLISPP motif Here, after performing a RCAN comparative genomic analysis we propose the existence of a novel functionally closely related RCAN subfamily restricted to vertebrates, the other RCAN proteins being considered only as distantly related members of the family. In addition, while three paralogous RCAN genes are found in vertebrates, there is only one in the other members of Eukarya. Moreover, besides the FLISPP motif, these paralogous genes have two others conserved motifs, the Cn-inhibitor RCAN (CIC) and the PxlxxT, which are restricted to vertebrates. In humans, RCAN1 and RCAN2 bind and inhibit Cn through their C-terminal region. Given the high amino acid identity in this region among human RCANs, authors in the field have hypothesized a role for RCAN3 in inhibiting Cn activity. Here, we demonstrate for the first time that human RCAN3, encoded by the RCAN3 (also known as DSCRIL2) gene, interacts physically and functionally with Cn. This interaction takes place only through the RCAN3 CIC motif. Overexpression of this sequence inhibits Cn activity towards the nuclear factor of activated T cells (NFAT) transcription factors and down-regulates NFAT-dependent cytokine gene expression in activated human Jurkat T cells. (c) 2007 Elsevier B.V. All rights reserved.
机译:基于其FLISPP基序的保守性,钙调神经磷酸酶(RCAN)蛋白质的调节剂(以前称为钙加压素)被认为是从酵母到人的保守性良好的家族。在此,在进行RCAN比较基因组分析后,我们提出了一种在功能上密切相关的新型RCAN亚科仅限于脊椎动物,其他RCAN蛋白仅被视为该家族的远亲。另外,尽管在脊椎动物中发现了三个旁系RCAN基因,但在Eukarya的其他成员中只有一个。此外,除了FLISPP母题外,这些旁系同源基因还具有其他两个保守的母题,即Cn抑制剂RCAN(CIC)和PxlxxT,它们仅限于脊椎动物。在人类中,RCAN1和RCAN2通过其C末端区域结合并抑制Cn。考虑到人类RCAN中该区域的高度氨基酸同一性,该领域的作者假设RCAN3在抑制Cn活性中起着作用。在这里,我们首次证明了由RCAN3(也称为DSCRIL2)基因编码的人RCAN3在物理上和功能上与Cn相互作用。这种相互作用仅通过RCAN3 CIC基序发生。该序列的过表达抑制了Cn对活化T细胞核因子(NFAT)转录因子的活性,并下调了活化Jurkat T细胞中NFAT依赖性细胞因子基因的表达。 (c)2007 Elsevier B.V.保留所有权利。

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