首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Cloning and functional analysis of a family of nuclear matrix transcription factors (NP/NMP4) that regulate type I collagen expression in osteoblasts.
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Cloning and functional analysis of a family of nuclear matrix transcription factors (NP/NMP4) that regulate type I collagen expression in osteoblasts.

机译:调节成骨细胞中I型胶原表达的核基质转录因子(NP / NMP4)家族的克隆和功能分析。

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Collagen expression is coupled to cell structure in connective tissue. We propose that nuclear matrix architectural transcription factors link cell shape with collagen promoter geometry and activity. We previously indicated that nuclear matrix proteins (NP/NMP4) interact with the rat type I collagen alpha1(I) polypeptide chain (COL1A1) promoter at two poly(dT) sequences (sites A and B) and bend the DNA. Here, our objective was to determine whether NP/NMP4-COL1A1 binding influences promoter activity and to clone NP/NMP4. Promoter-reporter constructs containing 3.5 kilobases (kb) of COL1A1 5' flanking sequence were fused to a reporter gene. Mutation of site A or site B increased promoter activity in rat UMR-106 osteoblast-like cells. Several full-length complementary DNAs (cDNAs) were isolated from an expression library using site B as a probe. These clones expressed proteins with molecular weights and COLIA1 binding activity similar to NP/NMP4. Antibodies to these proteins disrupted native NP/NMP4-COL1A1 binding activity. Overexpression of specific clones in UMR-106 cells repressed COL1A1 promoter activity. The isolated cDNAs encode isoforms of Cys2His2 zinc finger proteins that contain an AT-hook, a motif found in architectural transcription factors. Some of these isoforms recently have been identified as Cas-interacting zinc finger proteins (CIZ) that localize to fibroblast focal adhesions and enhance metalloproteinase gene expression. We observed NP/NMP4/CIZ expression in osteocytes, osteoblasts, and chondrocytes in rat bone. We conclude that NP/NMP4/CIZ is a novel family of nuclear matrix transcription factors that may be part of a general mechanical pathway that couples cell structure and function during extracellular matrix remodeling.
机译:胶原蛋白表达与结缔组织中的细胞结构偶联。我们建议核基质建筑转录因子链接细胞形状与胶原启动子的几何形状和活性。我们先前指出核基质蛋白(NP / NMP4)与大鼠I型胶原蛋白alpha1(I)多肽链(COL1A1)启动子在两个poly(dT)序列(位点A和B)相互作用,并使DNA弯曲。在这里,我们的目标是确定NP / NMP4-COL1A1结合是否影响启动子活性并克隆NP / NMP4。将含有3.5 kb(COL1A1 5'侧翼序列)的启动子-报告子构建体与报告基因融合。位点A或位点B的突变增加了大鼠UMR-106成骨细胞样细胞中的启动子活性。使用位点B作为探针从表达文库中分离了几个全长互补DNA(cDNA)。这些克隆表达的蛋白质具有与NP / NMP4相似的分子量和COLIA1结合活性。这些蛋白质的抗体破坏了天然NP / NMP4-COL1A1的结合活性。 UMR-106细胞中特定克隆的过度表达抑制了COL1A1启动子的活性。分离的cDNA编码Cys2His2锌指蛋白的同工型,其中含有AT钩,这是在建筑转录因子中发现的基序。这些同工型中的一些最近被鉴定为与Cas相互作用的锌指蛋白(CIZ),其定位于成纤维细胞粘着斑并增强金属蛋白酶基因表达。我们观察到大鼠骨中的骨细胞,成骨细胞和软骨细胞中的NP / NMP4 / CIZ表达。我们得出的结论是,NP / NMP4 / CIZ是核基质转录因子的新家族,可能是在细胞外基质重塑过程中耦合细胞结构和功能的一般机械途径的一部分。

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