首页> 外文学位 >Zfp521, a novel zinc finger transcription factor, regulates chondrocyte differentiation at multiple steps acting downstream of parathyroid hormone (PTH)-related peptide (PTHrP).
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Zfp521, a novel zinc finger transcription factor, regulates chondrocyte differentiation at multiple steps acting downstream of parathyroid hormone (PTH)-related peptide (PTHrP).

机译:Zfp521是一种新颖的锌指转录因子,可在甲状旁腺激素(PTH)相关肽(PTHrP)下游的多个步骤调节软骨细胞的分化。

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摘要

Zfp521 was originally identified as a part of a molecular complex that regulates osteoblast differentiation given its negative effect over the transcription factor Runx2. It is preferentially expressed both in vivo and in vitro by pre-hypertrophic chondrocytes where it colocalizes with the receptor for parathyroid hormone (PTH)-related peptide (PTHrP) (PTHR1). In vitro overexpression of Zfp521 negatively regulates early and late chondrocyte differentiation processes, comparable to the negative effect of PTHrP (1-34). In fact, PTHrP (1-34) dose- and time-dependently upregulates Zfp521 expression via cAMP/PKA signaling pathway. Moreover, PTHrP signaling is at least required for the in vivo steady state expression of Zfp521, as mice lacking PTHR1 exhibits low levels of Zfp521 while high PTHR1 signaling significantly upregulates Zfp521 expression. The chondrocyte-specific Zfp521 conditional KO (cKO) mice exhibit postnatal growth retardation evident as early as 2 weeks of age. The absence of Zfp521 leads to a reduced thickness of the growth plate involving all constitutive layers. Specifically, in pre-hypertrophic chondrocytes lacking Zfp521, PTHrP failed to upregulate cyclin D1 and antagonize Runx2 generating a reduced cell proliferation and an early hypertrophy. These mutant hypertrophic chondrocytes are bigger than their respective control and functionally impaired as they secrete less extracellular matrix, which becomes also early mineralized. Zfp521 cKO growth plates have a significantly reduced hypertrophic zone in spite of an enhanced hypertrophic differentiation. This is secondary to the decreased secretory function in hypertrophic chondrocytes and an enhanced bone formation generated by an increased chondrocyte apoptosis mediated by low levels of Bcl-2 and high Caspase-3 expression and activity, and an augmented osteoclast differentiation in the chondro-osseus junction driven by an increase in the pro-osteoclastogenic RANKL/OPG ratio.
机译:Zfp521最初被认为是调节成骨细胞分化的分子复合物的一部分,因为它对转录因子Runx2具有负面影响。它在体内和体外优先由肥大前的软骨细胞表达,并与甲状旁腺激素(PTH)相关肽(PTHrP)(PTHR1)的受体共定位。 Zfp521的体外过表达负调控早期和晚期软骨细胞分化过程,与PTHrP的负作用相当(1-34)。实际上,PTHrP(1-34)通过cAMP / PKA信号通路以剂量和时间依赖性方式上调Zfp521表达。此外,由于缺乏PTHR1的小鼠表现出低水平的Zfp521,而高PTHR1信号显着上调Zfp521表达,因此Zfp521的体内稳态表达至少需要PTHrP信号传导。软骨细胞特异性Zfp521条件性KO(cKO)小鼠早在2周龄时就表现出明显的出生后生长迟缓。 Zfp521的缺乏导致涉及所有本构层的生长板厚度减小。具体而言,在缺乏Zfp521的肥大前软骨细胞中,PTHrP无法上调细胞周期蛋白D1和拮抗Runx2,从而导致细胞增殖减少和早期肥大。这些突变型肥大性软骨细胞比它们各自的对照大,并且由于它们分泌较少的细胞外基质而功能受损,该基质也变得早期矿化。 Zfp521 cKO生长板尽管肥大分化增强,但肥大区明显减少。这是继发于肥大软骨细胞的分泌功能下降和由低水平的Bcl-2和高Caspase-3表达和活性介导的软骨细胞凋亡增加以及软骨-骨交界处破骨细胞分化增强导致的骨形成增强所致由促破骨细胞生成的RANKL / OPG比例增加所驱动。

著录项

  • 作者

    Correa Laverde, Diego.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Biology Molecular.;Biology Physiology.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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