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本文引用的文献

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Mechanism regulating nuclear calcium signaling.
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Regeneration gaps: observations on stem cells and cardiac repair.再生差距:关于干细胞与心脏修复的观察
J Am Coll Cardiol. 2006 May 2;47(9):1777-85. doi: 10.1016/j.jacc.2006.02.002. Epub 2006 Apr 17.
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Cardiac regeneration.心脏再生
J Am Coll Cardiol. 2006 May 2;47(9):1769-76. doi: 10.1016/j.jacc.2006.02.003. Epub 2006 Apr 17.
4
Local InsP3-dependent perinuclear Ca2+ signaling in cardiac myocyte excitation-transcription coupling.心肌细胞兴奋-转录偶联中局部依赖肌醇三磷酸的核周钙离子信号传导
J Clin Invest. 2006 Mar;116(3):675-82. doi: 10.1172/JCI27374.
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Role of Ca2+/calmodulin-dependent kinases in skeletal muscle plasticity.Ca2+/钙调蛋白依赖性激酶在骨骼肌可塑性中的作用。
J Appl Physiol (1985). 2005 Aug;99(2):414-23. doi: 10.1152/japplphysiol.00015.2005.
6
Bone marrow cells differentiate in cardiac cell lineages after infarction independently of cell fusion.梗死心肌内骨髓细胞独立于细胞融合分化为心肌细胞系。
Circ Res. 2005 Jan 7;96(1):127-37. doi: 10.1161/01.RES.0000151843.79801.60. Epub 2004 Nov 29.
7
Differentiation of bone marrow stromal cells into the cardiac phenotype requires intercellular communication with myocytes.骨髓基质细胞向心脏表型的分化需要与心肌细胞进行细胞间通讯。
Circulation. 2004 Oct 26;110(17):2658-65. doi: 10.1161/01.CIR.0000145609.20435.36. Epub 2004 Oct 18.
8
L-type voltage-gated Ca2+ channels modulate expression of smooth muscle differentiation marker genes via a rho kinase/myocardin/SRF-dependent mechanism.L型电压门控Ca2+通道通过一种 Rho激酶/心肌素/血清反应因子依赖性机制调节平滑肌分化标志物基因的表达。
Circ Res. 2004 Aug 20;95(4):406-14. doi: 10.1161/01.RES.0000138582.36921.9e. Epub 2004 Jul 15.
9
Mesenchymal stem cells and their potential as cardiac therapeutics.间充质干细胞及其作为心脏治疗手段的潜力。
Circ Res. 2004 Jul 9;95(1):9-20. doi: 10.1161/01.RES.0000135902.99383.6f.
10
Adult-derived liver stem cells acquire a cardiomyocyte structural and functional phenotype ex vivo.成体来源的肝干细胞在体外获得心肌细胞的结构和功能表型。
Am J Pathol. 2004 Jul;165(1):135-45. doi: 10.1016/S0002-9440(10)63282-8.

控制肝干细胞获得心脏表型的机制。

Mechanisms controlling the acquisition of a cardiac phenotype by liver stem cells.

作者信息

Muller-Borer Barbara J, Cascio Wayne E, Esch Gwyn L, Kim Hyung-Suk, Coleman William B, Grisham Joe W, Anderson Page A W, Malouf Nadia N

机构信息

Department of Internal Medicine, Brody School of Medicine, East Carolina University, Greenville, NC 27834, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Mar 6;104(10):3877-82. doi: 10.1073/pnas.0700416104. Epub 2007 Feb 26.

DOI:10.1073/pnas.0700416104
PMID:17360446
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1805456/
Abstract

The mechanisms underlying stem cell acquisition of a cardiac phenotype are unresolved. We studied early events during the acquisition of a cardiac phenotype by a cloned adult liver stem cell line (WB F344) in a cardiac microenvironment. WB F344 cells express a priori the transcription factors GATA4 and SRF, connexin 43 in the cell membrane, and myoinositol 1,4,5-triphosphate receptor in the perinuclear region. Functional cell-cell communication developed between WB F344 cells and adjacent cocultured cardiomyocytes in 24 h. De novo cytoplasmic Ca(2+) and nuclear Ca(2+) oscillations appeared in WB F344 cells, synchronous with Ca(2+) transients in adjacent cardiomyocytes. The [Ca(2+)] oscillations in the WB F344 cells, but not those in the cardiomyocytes, were eliminated by a gap junction uncoupler and reappeared with its removal. By 24 h, WB F344 cells began expressing the cardiac transcription factors Nkx2.5, Tbx5, and cofactor myocardin; cardiac proteins 24 h later; and a sarcomeric pattern 4-6 days later. Myoinositol 1,4,5-triphosphate receptor inhibition suppressed WB F344 cell Ca(2+) oscillations but not Ca(2+) oscillations, and L-type calcium channel inhibition eliminated [Ca(2+)] oscillations in cardiomyocytes and WB F344 cells. The use of these inhibitors was associated with a decrease in Nkx2.5, Tbx5, and myocardin expression in the WB F344 cells. Our findings suggest that signals from cardiomyocytes diffuse through shared channels, inducing [Ca(2+)] oscillations in the WB F344 cells. We hypothesize that the WB F344 cell Ca(2+) oscillations activate the expression of a cardiac specifying gene program, ushering in a cardiac phenotype.

摘要

干细胞获得心脏表型的潜在机制尚未明确。我们研究了克隆的成年肝干细胞系(WB F344)在心脏微环境中获得心脏表型过程中的早期事件。WB F344细胞先验性地表达转录因子GATA4和SRF、细胞膜上的连接蛋白43以及核周区域的肌醇1,4,5 -三磷酸受体。24小时内,WB F344细胞与相邻共培养的心肌细胞之间形成了功能性细胞间通讯。WB F344细胞中出现了新的细胞质Ca(2 +)和核Ca(2 +)振荡,与相邻心肌细胞中的Ca(2 +)瞬变同步。WB F344细胞中的[Ca(2 +)]振荡而非心肌细胞中的振荡,被缝隙连接解偶联剂消除,并在其去除后重新出现。到24小时时,WB F344细胞开始表达心脏转录因子Nkx2.5、Tbx5和辅助因子心肌转录辅激活因子;24小时后表达心脏蛋白;4 - 6天后出现肌节模式。肌醇1,4,5 -三磷酸受体抑制可抑制WB F344细胞的Ca(2 +)振荡,但不抑制Ca(2 +)振荡,L型钙通道抑制可消除心肌细胞和WB F344细胞中的[Ca(2 +)]振荡。使用这些抑制剂与WB F344细胞中Nkx2.5、Tbx5和心肌转录辅激活因子表达的降低有关。我们的研究结果表明,来自心肌细胞的信号通过共享通道扩散,诱导WB F344细胞中的[Ca(2 +)]振荡。我们推测,WB F344细胞的Ca(2 +)振荡激活了心脏特异性基因程序的表达,从而产生心脏表型。