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散发性包涵体肌炎中LMNA剪接变化及翻译后加工的研究

Investigation of splicing changes and post-translational processing of LMNA in sporadic inclusion body myositis.

作者信息

Luo Yue-Bei, Mitrpant Chalermchai, Johnsen Russell, Fabian Vicki, Needham Merrilee, Fletcher Sue, Wilton Steve D, Mastaglia Frank L

机构信息

Centre for Neuromuscular and Neurological Disorders, Australian Neuro-Muscular Research Institute, University of Western Australia Perth, Australia ; Laboratory of Neuromuscular Disorders, Department of Neurology, Qilu Hospital, Shandong University Jinan, China.

出版信息

Int J Clin Exp Pathol. 2013 Aug 15;6(9):1723-33. eCollection 2013.

Abstract

Some features of sporadic inclusion body myositis (s-IBM) suggest that there is acceleration of the normal ageing process in muscle tissue. LMNA encodes the nuclear lamina proteins lamin A/C through alternative splicing, and aberrant splicing of exon 11 leads to the premature ageing disease, Hutchinson-Gilford progeria syndrome. Progerin, the pathogenic isoform expressed in HGPS tissues, has also been detected at low levels in tissues of normal individuals with aging. We therefore investigated the alternative splicing of LMNA gene transcripts, and the post-translational processing of prelamin A, in s-IBM and control muscle samples. Age-related low level expression of the progerin transcript was detected in both s-IBM and control muscles, but was not increased in s-IBM and there was no increase in progerin protein or demonstrable accumulation of intermediate prelamin isoforms in the s-IBM muscles. However, an age-related shift in the balance of splicing towards lamin A-related transcripts, which was present in normal muscles, was not found in s-IBM. Our findings indicate that while there are changes in the patterns of LMNA splicing in s-IBM muscle which are probably secondary to the underlying pathological process, it is unlikely that aberrant splicing of exon 11 or defective post-translational processing of prelamin A are involved in the pathogenesis of the disease.

摘要

散发性包涵体肌炎(s-IBM)的一些特征表明,肌肉组织中正常衰老过程有所加速。LMNA基因通过可变剪接编码核纤层蛋白A/C,外显子11的异常剪接会导致早衰疾病——哈钦森-吉尔福德早衰综合征。早衰蛋白是在HGPS组织中表达的致病异构体,在正常衰老个体的组织中也检测到其低水平表达。因此,我们研究了s-IBM和对照肌肉样本中LMNA基因转录本的可变剪接以及前体核纤层蛋白A的翻译后加工情况。在s-IBM和对照肌肉中均检测到与年龄相关的早衰蛋白转录本低水平表达,但在s-IBM中并未增加,且s-IBM肌肉中早衰蛋白水平未升高,也未发现中间前体核纤层蛋白异构体有明显积累。然而,在正常肌肉中存在的与年龄相关的剪接平衡向核纤层蛋白A相关转录本的转变,在s-IBM中未发现。我们的研究结果表明,虽然s-IBM肌肉中LMNA剪接模式存在变化,这可能是潜在病理过程的继发结果,但外显子11的异常剪接或前体核纤层蛋白A翻译后加工缺陷不太可能参与该疾病的发病机制。

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