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Shwachman-Diamond 综合征蛋白 SBDS 缺失的人细胞中生长受损、造血集落形成和核糖体成熟。

Impaired growth, hematopoietic colony formation, and ribosome maturation in human cells depleted of Shwachman-Diamond syndrome protein SBDS.

机构信息

The Feinstein Institute for Medical Research, Manhasset, New York, USA.

出版信息

Pediatr Blood Cancer. 2013 Feb;60(2):281-6. doi: 10.1002/pbc.24300. Epub 2012 Sep 19.

Abstract

BACKGROUND

Shwachman-Diamond syndrome (SDS), associated with SBDS mutations, is characterized by pancreatic exocrine dysfunction and marrow failure. Sdo1, the yeast ortholog of SBDS, is implicated in maturation of the 60S ribosomal subunit, with delayed export of 60S-like particles from the nucleoplasm when depleted. Sdo1 is needed for release of the anti-subunit association factor Tif6 from 60S subunits, and Tif6 may not be recycled to the nucleus when Sdo1 is absent.

METHODS

To clarify the role of SBDS in human ribosome function, TF-1 erythroleukemia and A549 lung carcinoma cells were transfected with vectors expressing RNAi against SBDS.

RESULTS

Growth and hematopoietic colony forming potential of TF-1 knockdown cells were markedly hindered when compared to controls. To analyze the effect of SBDS on 60S subunit maturation in A549 cells, subunit localization was assessed by transfection with a vector expressing a fusion between human RPL29 and GFP: we found a higher percentage of SBDS-depleted cells with nuclear localization of 60S subunits. Polysome analysis of TF-1 knockdown cells showed a decrease in free 60S and 80S subunits. We also analyzed the levels of eIF6 (human ortholog of Tif6) following near-complete knockdown of SBDS in TF-1 cells and found an approximately 20% increase in the amount of eIF6 associated with the 60S subunit.

CONCLUSIONS

We conclude that knockdown of SBDS leads to growth inhibition and defects in ribosome maturation, suggesting a role for wild-type SBDS in nuclear export of pre-60S subunits. Furthermore, knockdown of SBDS may interfere with eIF6 recycling.

摘要

背景

Shwachman-Diamond 综合征(SDS)与 SBDS 突变相关,其特征为胰腺外分泌功能障碍和骨髓衰竭。酵母 SBDS 同源物 Sdo1 参与 60S 核糖体亚基的成熟,当耗尽时,其核质中 60S 样颗粒的输出延迟。Sdo1 对于抗亚基结合因子 Tif6 从 60S 亚基中的释放是必需的,并且当 Sdo1 不存在时,Tif6 可能不会被回收至核内。

方法

为了阐明 SBDS 在人类核糖体功能中的作用,用表达针对 SBDS 的 RNAi 的载体转染 TF-1 红白血病细胞和 A549 肺腺癌细胞。

结果

与对照相比,TF-1 敲低细胞的生长和造血集落形成潜能明显受到阻碍。为了分析 SBDS 对 A549 细胞 60S 亚基成熟的影响,通过转染表达人 RPL29 和 GFP 融合蛋白的载体来评估亚基定位:我们发现 SBDS 耗尽细胞中核定位的 60S 亚基比例更高。TF-1 敲低细胞的多核糖体分析显示游离 60S 和 80S 亚基减少。我们还分析了 TF-1 细胞中 SBDS 近乎完全敲低后 eIF6(人 Tif6 同源物)的水平,发现与 60S 亚基结合的 eIF6 量增加了约 20%。

结论

我们得出结论,SBDS 的敲低导致生长抑制和核糖体成熟缺陷,表明野生型 SBDS 在 60S 前亚基的核输出中起作用。此外,SBDS 的敲低可能会干扰 eIF6 的回收。

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