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碱性成纤维细胞生长因子抑制的类fidgetin 1基因调控成骨细胞的增殖和分化。

Fidgetin-like 1 gene inhibited by basic fibroblast growth factor regulates the proliferation and differentiation of osteoblasts.

作者信息

Park Su Jin, Kim Su Jin, Rhee Yumie, Byun Ji Hyun, Kim Seong Hwan, Kim Myoung Hee, Lee Eun Jig, Lim Sung-Kil

机构信息

Brain Korea 21 Project for Medical Science, College of Medicine, Yonsei University, Seoul, Republic of Korea.

出版信息

J Bone Miner Res. 2007 Jun;22(6):889-96. doi: 10.1359/jbmr.070311.

Abstract

UNLABELLED

The FIGNL1 gene was proven to be a new subfamily member of ATPases associated with diverse cellular activities (AAA proteins). In this in vitro study, the AAA proteins inhibited osteoblast proliferation and stimulated osteoblast differentiation. We showed that FIGNL1 may play some regulatory role in osteoblastogenesis.

INTRODUCTION

The fidgetin-like 1 (FIGNL1) gene encodes a new subfamily member of ATPases associated with diverse cellular activities (AAA proteins). Although the FIGNL1 protein localizes to both the nucleus and cytoplasm, the function of FIGNL1 remains unknown. In a previous study, we identified several genes that mediate the anabolic effects of basic fibroblast growth factor (bFGF) on bone by using microarray data. FIGNL1 was one of the genes that downregulated >2-fold in MC3T3-E1 cells after treatment with bFGF. Therefore, this study was aimed to identify and confirm the function of FIGNL1 on osteoblastogenesis.

MATERIALS AND METHODS

We examined the effect of the FIGNL1 gene on proliferation, differentiation, and apoptosis in mouse osteoblast cells (MC3T3-E1 and mouse primary calvarial cells) using flow cytometry, RT-PCR, cell proliferation assay, and cell death assay. MC3T3-E1 cells and mouse calvarial cells were transfected with small interfering RNA (siRNA) directed against the FIGNL1 or nontargeting control siRNA and examined by cell proliferation and cell death assays. Also, FIGNL1 was fused to enhance green fluorescent protein (EGFP), and the EGFP-fused protein was transiently expressed in MC3T3-E1 cells.

RESULTS

Reduced expression of FIGNL1 by bFGF and TGF-beta1 treatment was verified by RT-PCR analysis. Overexpression of FIGNL1 reduced the proliferation of MC3T3-E1 and calvarial cells, more than the mock transfected control cells did. In contrast, siFIGNL1 transfection significantly increased the proliferation of osteoblasts, whereas overexpression of FIGNL1 did not seem to alter apoptosis in osteoblasts. Meanwhile, overexpression of FIGNL1 enhanced the mRNA expression of alkaline phosphatase (ALP) and osteocalcin (OCN) in osteoblasts. In contrast, siFIGNL1 decreased the expression of ALP and OCN. A pEGFP-FIGNL1 transfected into MCT3-E1 cells had an initially ubiquitous distribution and rapidly translocated to the nucleus 1 h after bFGF treatment.

CONCLUSIONS

From these results, we proposed that FIGNL1, a subfamily member of the AAA family of proteins, might play some regulatory role in osteoblast proliferation and differentiation. Further analyses of FIGNL1 will be needed to better delineate the mechanisms contributing to the inhibition of proliferation and stimulation of osteoblast differentiation.

摘要

未标记

FIGNL1基因被证明是与多种细胞活动相关的ATP酶(AAA蛋白)的一个新亚家族成员。在这项体外研究中,AAA蛋白抑制成骨细胞增殖并刺激成骨细胞分化。我们表明FIGNL1可能在成骨细胞生成中发挥一些调节作用。

引言

类fidgetin-1(FIGNL1)基因编码与多种细胞活动相关的ATP酶(AAA蛋白)的一个新亚家族成员。尽管FIGNL1蛋白定位于细胞核和细胞质,但FIGNL1的功能仍然未知。在先前的一项研究中,我们通过使用微阵列数据鉴定了几个介导碱性成纤维细胞生长因子(bFGF)对骨骼合成代谢作用的基因。FIGNL1是在用bFGF处理后在MC3T3-E1细胞中下调超过2倍的基因之一。因此,本研究旨在鉴定并确认FIGNL1在成骨细胞生成中的功能。

材料和方法

我们使用流式细胞术、逆转录-聚合酶链反应(RT-PCR)、细胞增殖测定和细胞死亡测定,研究了FIGNL1基因对小鼠成骨细胞(MC3T3-E1和小鼠原代颅骨细胞)增殖、分化和凋亡的影响。MC3T3-E1细胞和小鼠颅骨细胞用针对FIGNL1的小干扰RNA(siRNA)或非靶向对照siRNA转染,并通过细胞增殖和细胞死亡测定进行检测。此外,FIGNL1与增强型绿色荧光蛋白(EGFP)融合,并且EGFP融合蛋白在MC3T3-E1细胞中瞬时表达。

结果

通过RT-PCR分析验证了bFGF和转化生长因子-β1(TGF-β1)处理后FIGNL1表达降低。FIGNL1的过表达比空载体转染的对照细胞更能降低MC3T3-E1和颅骨细胞的增殖。相反,siFIGNL1转染显著增加了成骨细胞的增殖,而FIGNL1的过表达似乎并未改变成骨细胞的凋亡。同时,FIGNL1的过表达增强了成骨细胞中碱性磷酸酶(ALP)和骨钙素(OCN)的mRNA表达。相反,siFIGNL1降低了ALP和OCN的表达。转染到MCT3-E1细胞中的pEGFP-FIGNL1最初分布广泛,并在bFGF处理后1小时迅速转运到细胞核。

结论

从这些结果来看,我们提出FIGNL1作为AAA蛋白家族的一个亚家族成员,可能在成骨细胞增殖和分化中发挥一些调节作用。需要对FIGNL1进行进一步分析,以更好地阐明导致增殖抑制和成骨细胞分化刺激作用的机制。

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