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胚胎干细胞向心肌细胞谱系分化过程中T型Ca2+通道从Cav3.2向Cav3.1的亚型转换。

Subtype switching of T-type Ca 2+ channels from Cav3.2 to Cav3.1 during differentiation of embryonic stem cells to cardiac cell lineage.

作者信息

Mizuta Einosuke, Miake Junichiro, Yano Shuichi, Furuichi Hitomi, Manabe Kasumi, Sasaki Norihito, Igawa Osamu, Hoshikawa Yoshiko, Shigemasa Chiaki, Nanba Eiji, Ninomiya Haruaki, Hidaka Kyoko, Morisaki Takayuki, Tajima Fumihito, Hisatome Ichiro

机构信息

Division of Regenerative Medicine and Therapeutics, Department of Genetic Medicine and Regenerative Therapeutics, Institute of Regenerative Medicine and Biofunction, Tottori University Graduate School of Medical Science, Japan.

出版信息

Circ J. 2005 Oct;69(10):1284-9. doi: 10.1253/circj.69.1284.

Abstract

BACKGROUND

The developmental changes of Ni(2+)-sensitivity to automaticity of Nkx2.5-positive cells derived from mouse embryonic stem cell have been identified, suggesting developmental regulation of expressing Ni(2+)-sensitive T-type Ca(2+) channel, although the mechanism of the change has not been fully studied.

METHODS AND RESULTS

Transcripts of Cav3.2, Cav3.1 and Cav1.2 genes of beating Nkx2.5-positive cells, which encode the Ni(2+)-sensitive T-type Ca(2+) channel, Ni(2+)-insensitive T-type Ca(2+) channel, and L-type Ca(2+) channel, respectively, were investigated by real-time reverse-transcriptase-polymerase chain reaction, and the current density of each channel was measured by patch-clamp techniques at the early and late stages of differentiation. The expression of the Cav3.2 transcript predominated in the early stage whereas those of Cav3.1 and Cav1.2 transcripts were upregulated in the late stage, which was consistent with the change in each current density, suggesting the expression of channel proteins is largely determined at the transcriptional level.

CONCLUSION

The results indicate that the mechanism of change of Ni(2+)-sensitivity is partly, if not completely, the subtype switch of T-type Ca(2+) channel from Cav3.2 to Cav3.1 at the transcriptional level, and that the expression of the L-type Ca(2+) channel might have an attenuating effect on Ni(2+)-sensitivity to automaticity in the late stage of differentiation.

摘要

背景

已确定从小鼠胚胎干细胞衍生的Nkx2.5阳性细胞对镍离子(Ni²⁺)敏感性的发育变化,这表明存在对表达Ni²⁺敏感的T型钙通道的发育调控,尽管这种变化的机制尚未得到充分研究。

方法与结果

通过实时逆转录聚合酶链反应研究了跳动的Nkx2.5阳性细胞中分别编码Ni²⁺敏感的T型钙通道、Ni²⁺不敏感的T型钙通道和L型钙通道的Cav3.2、Cav3.1和Cav1.2基因的转录本,并在分化的早期和晚期通过膜片钳技术测量了每个通道的电流密度。Cav3.2转录本的表达在早期占主导地位,而Cav3.1和Cav1.2转录本在晚期上调,这与每个电流密度的变化一致,表明通道蛋白的表达在很大程度上是在转录水平上决定的。

结论

结果表明,Ni²⁺敏感性变化的机制在转录水平上部分(如果不是完全)是T型钙通道从Cav3.2到Cav3.1的亚型转换,并且L型钙通道的表达可能在分化后期对Ni²⁺对自律性的敏感性具有减弱作用。

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