Zhang Ru-xu, Tang Bei-sha, Zi Xiao-hong, Xia Kun, Pan Qian, Zhang Fu-feng, Li Shu-jian, Zhao Guo-hua, Guo Ke
Department of Neurology, Xiangya Hospital, Central South University, Changsha, Hunan 410008, P. R. China.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2006 Dec;23(6):601-4.
To study the possible mechanism of the intracellular aggregate formation of small heat shock protein HSPB8 (HSPB8)(K141N) mutation resulting in axonal Charcot-Marie-Tooth disease type 2L(CMT2L).
The cell models which transiently expressed pEGFPN1-HSPB8 and pEGFPN1-(K141N)HSPB8 were established. The immunofluorescent co-location study of EGFP-(K141N)HSPB8 and HSPB1, EGFP-(K141N)HSPB8 and neurofilament light chain (NEFL) was carried out in the SHSY5Y cell models. The aggregate formation of EGFP-(K141N)HSPB8 in cell models was investigated and the possible mechanism of cellular aggregate formation was analyzed by t test and analysis of variance between group(ANOVA).
EGFP-(K141N)HSPB8 formed large aggregate which predominantly located around the nucleus in cell models. EGFP-(K141N)HSPB8 co-localized perfectly with HSPB1 and NEFL in the SHSY5Y cell models. The aggregate formation was different in different cell types, there were fewer aggregates formed in an sHSPs deficient milieu than in HEK293T cells.
(K141N)HSPB8 formed aggregates predominantly locate around the nucleus in cells. (K141N)HSPB8 co-localizes perfectly with HSPB1 and NEFL. The aggregate formation may be due to (K141N)HSPB8 conformational change leading to self aggregation and its abnormal interaction with other sHSPs such as HSPB1.
研究小热休克蛋白HSPB8(HSPB8)(K141N)突变导致轴索性2L型夏科-马里-图斯病(CMT2L)细胞内聚集体形成的可能机制。
建立瞬时表达pEGFPN1-HSPB8和pEGFPN1-(K141N)HSPB8的细胞模型。在SHSY5Y细胞模型中进行EGFP-(K141N)HSPB8与HSPB1、EGFP-(K141N)HSPB8与神经丝轻链(NEFL)的免疫荧光共定位研究。研究细胞模型中EGFP-(K141N)HSPB8的聚集体形成情况,并通过t检验和组间方差分析(ANOVA)分析细胞聚集体形成的可能机制。
在细胞模型中,EGFP-(K141N)HSPB8形成大的聚集体,主要位于细胞核周围。在SHSY5Y细胞模型中,EGFP-(K141N)HSPB8与HSPB1和NEFL完美共定位。不同细胞类型中聚集体形成情况不同,在小热休克蛋白缺陷环境中形成的聚集体比在HEK293T细胞中少。
(K141N)HSPB8在细胞中形成的聚集体主要位于细胞核周围。(K141N)HSPB8与HSPB1和NEFL完美共定位。聚集体形成可能是由于(K141N)HSPB8构象改变导致自身聚集以及其与其他小热休克蛋白如HSPB1的异常相互作用。