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首页> 外文期刊>The Journal of biological chemistry >Inhibition of Proprotein Convertase SKI-1 Blocks Transcription of Key Extracellular Matrix Genes Regulating Osteoblastic Mineralization
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Inhibition of Proprotein Convertase SKI-1 Blocks Transcription of Key Extracellular Matrix Genes Regulating Osteoblastic Mineralization

机译:抑制ProProtein转化酶的SKI-1阻断重点细胞外基质基因的转录调节骨细胞髓质矿化

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Mineralization, a characteristic phenotypic property of osteoblastic lineage cells, was blocked by 4-(2-aminoethyl) benzenesulfonyl fluoride hydrochloride (AEBSF) and decanoyl-Arg-Arg-Leu-Leu-chloromethyl ketone (dec-RRLL-cmk), inhibitors of SKI-1 (site 1; subtilisin kexin like-1) protease. Because SKI-1 is required for activation of SREBP and CREB (cAMP-response element-binding protein)/ATF family transcription factors, we tested the effect of these inhibitors on gene expression. AEBSF decreased expression of 140 genes by 1.5–3.0-fold including Phex, Dmp1, COL1A1, COL11A1, and fibronectin. Direct comparison of AEBSF and dec-RRLL-cmk, a more specific SKI-1 inhibitor, demonstrated that expression of Phex, Dmp1, COL11A1, and fibronectin was reduced by both, whereas COL1A2 and HMGCS1 were reduced only by AEBSF. AEBSF and dec-RRLL-cmk decreased the nuclear content of SKI-1-activated forms of transcription factors SREBP-1, SREBP-2, and OASIS. In contrast to AEBSF, the actions of dec-RRLL-cmk represent the sum of its direct actions on SKI-1 and indirect actions on caspase-3. Specifically, dec-RRLL-cmk reduced intracellular caspase-3 activity by blocking the formation of activated 19-kDa caspase-3. Conversely, overexpression of SKI-1-activated SREBP-1a and CREB-H in UMR106-01 osteoblastic cells increased the number of mineralized foci and altered their morphology to yield mineralization nodules, respectively. In summary, SKI-1 regulates the activation of transmembrane transcription factor precursors required for expression of key genes required for mineralization of osteoblastic cultures in vitro and bone formation in vivo. Our results indicate that the differentiated phenotype of osteoblastic cells and possibly osteocytes depends upon the non-apoptotic actions of SKI-1.
机译:矿化,骨细胞谱系细胞的特征表型特性被4-(2-氨基乙基)苯磺酰氟盐酸盐(AEBSF)和癸酰基-Ac-arg-Leu-氯甲基酮(Dec-RRLL-CMK),抑制剂封闭SKI-1(Site 1;枯草杆菌蛋白酶Kexin Like-1)蛋白酶。因为Srebp和Creb(营地响应元素结合蛋白)/ ATF家族转录因子的激活需要SKI-1,所以我们测试了这些抑制剂对基因表达的影响。 AEBSF将140个基因的表达减少1.5-3.0倍,包括PHEX,DMP1,COL1A1,COL11A1和纤连蛋白。 AEBSF和DEC-RRLL-CMK的直接比较,更具体的SKI-1抑制剂,证明了PHEX,DMP1,COL11A1和纤连蛋白的表达减少,而COL1A2和HMGCS1仅被AEBSF降低。 AEBSF和DEC-RRLL-CMK降低了SKI-1激活形式的转录因子Srebp-1,Srebp-2和绿洲的核含量。与AEBSF相比,DEC-RRLL-CMK的动作代表了SKI-1上的直接动作和Caspase-3的间接动作的总和。具体地,DEC-RRLL-CMK通过阻断活化的19-KDA Caspase-3的形成减少细胞内胱天蛋白酶-3活性。相反,在UMR106-01骨细胞中的Ski-1激活的Srebp-1a和Creb-h的过度表达增加了矿化灶的数量,并分别改变了它们的形态,以产生矿化结节。总之,SKI-1调节在体外体外和骨形成中骨化培养物矿化所需的关键基因所需的跨膜转录因子前体的激活。我们的结果表明,骨细胞细胞和可能骨细胞的分化表型取决于SKI-1的非凋亡作用。

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