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不完全抑制 R789C(p.R989C)和 R992C(p.R1192C)胶原 II 突变体表达后细胞内和细胞外变化的持续存在。

Persistence of intracellular and extracellular changes after incompletely suppressing expression of the R789C (p.R989C) and R992C (p.R1192C) collagen II mutants.

机构信息

Department of Dermatology and Cutaneous Biology, Jefferson Medical College, Thomas Jefferson University, 233 S. 10th Street, Philadelphia, PA 19107, USA.

出版信息

Hum Mutat. 2011 Jul;32(7):794-805. doi: 10.1002/humu.21506. Epub 2011 May 5.

Abstract

Mutations in COL2A1 produce a spectrum of disorders whose hallmark feature is alterations in skeletal development. Attempts to counteract the effects of collagen mutations at the molecular level have been relatively ineffective due to the inability to selectively suppress a mutant allele, and failure to deliver a sufficient number of cells expressing wild-type collagen. Moreover, these approaches are hampered because the minimal therapeutic conditions that would allow extracellular matrix remodeling and recovery of cells from stress are not known. Here, we employed a tetracycline-inducible system for expressing the R789C or R992C collagen II mutants, allowing us to decrease the production of mutant proteins by 25, 50, 75, or 100% with respect to their initial production. Through analysis of intracellular and extracellular parameters we have shown that affected cell/matrix systems are able to recover from mutation-induced aberrations only when 100% expression of mutant collagens is shut off, but not if the expression of small amounts of mutant molecules persists in the system. Our data suggest that efficient remodeling of tissues affected by the presence of thermolabile collagen mutants may depend on their complete elimination rather than on partial reduction.

摘要

COL2A1 基因突变会导致一系列疾病,其特征性表现为骨骼发育异常。由于无法选择性抑制突变等位基因,并且无法递送足够数量表达野生型胶原蛋白的细胞,因此在分子水平上尝试对抗胶原蛋白突变的影响效果相对较差。此外,这些方法受到阻碍,因为不知道允许细胞外基质重塑和从应激中恢复的最小治疗条件。在这里,我们使用四环素诱导系统表达 R789C 或 R992C 胶原蛋白 II 突变体,使我们能够相对于初始表达将突变蛋白的产生减少 25%、50%、75%或 100%。通过分析细胞内和细胞外参数,我们已经表明,受影响的细胞/基质系统只有在完全关闭突变型胶原蛋白的表达时才能从突变诱导的异常中恢复,但如果系统中持续存在少量突变分子的表达则不能恢复。我们的数据表明,受热不稳定胶原蛋白突变体存在影响的组织的有效重塑可能取决于它们的完全消除,而不是部分减少。

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