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来自Cx43基因敲除小鼠的星形胶质细胞之间的钙波。

Calcium waves between astrocytes from Cx43 knockout mice.

作者信息

Scemes E, Dermietzel R, Spray D C

机构信息

Department of Physiology, University of Sao Paulo, Brazil.

出版信息

Glia. 1998 Sep;24(1):65-73. doi: 10.1002/(sici)1098-1136(199809)24:1<65::aid-glia7>3.0.co;2-#.

Abstract

Gap junctions are regarded as the primary pathway underlying propagation of Ca2+ waves between astrocytes, although signaling through extracellular space may also contribute. Results obtained from astrocytes cultured from sibling Cx43 knockout (KO) and wild-type (WT) mice in six litters showed that Ca2+ waves propagated more slowly in Cx43 KO than in WT astrocytes; however, because this difference in velocity was only seen in conditions where cell confluence was higher in WT than KO astrocytes, it is attributable to differences in plating density. By contrast, density-independent differences were observed in the amplitudes of the Ca2+ responses (15% smaller in KO astrocytes) and efficacy of spread (to 14% fewer cells in KO astrocytes). Blockade of purinergic receptors with suramin reduced the velocities of the waves by 40% in WT and KO astrocytes and reduced the amplitudes by 20% and 6%, respectively. In the presence of heptanol, Ca2+ waves spread to only 30% of the cells, with a 70% reduced velocity and 30% reduced amplitude. It is concluded that the propagation of Ca2+ waves between astrocytes from Cx43 KO mice is not so greatly affected as expected by deletion of the major gap junction protein between these cells. The residual 5% coupling contributed by the additional connexins (Cx40, Cx45, and Cx46) expressed in KO astrocytes still suffices to provide a more substantial portion of Ca2+ wave propagation than does signaling through extracellular purinergic pathways. These studies demonstrate that, even with severely reduced junctional conductance, Cx43 KO astrocytes are capable of performing long-range Ca2+ wave signaling, perhaps preserving one mechanism critical to neural function.

摘要

缝隙连接被认为是星形胶质细胞之间Ca2+波传播的主要途径,尽管通过细胞外空间的信号传导也可能起作用。从六窝同胞Cx43基因敲除(KO)和野生型(WT)小鼠培养的星形胶质细胞获得的结果表明,Ca2+波在Cx43 KO星形胶质细胞中的传播比WT星形胶质细胞中更慢;然而,由于这种速度差异仅在WT星形胶质细胞的细胞汇合度高于KO星形胶质细胞的条件下才可见,这归因于接种密度的差异。相比之下,在Ca2+反应的幅度(KO星形胶质细胞中低15%)和传播效率(KO星形胶质细胞中传播到的细胞少14%)方面观察到了与密度无关的差异。用苏拉明阻断嘌呤能受体可使WT和KO星形胶质细胞中的波速分别降低40%,并使幅度分别降低20%和6%。在庚醇存在的情况下,Ca2+波仅传播到30%的细胞,速度降低70%,幅度降低30%。得出的结论是,来自Cx43 KO小鼠的星形胶质细胞之间Ca2+波的传播并没有像预期的那样因这些细胞之间主要缝隙连接蛋白的缺失而受到极大影响。KO星形胶质细胞中表达的额外连接蛋白(Cx40、Cx45和Cx46)贡献的5%残余耦联仍然足以提供比通过细胞外嘌呤能途径的信号传导更大比例的Ca2+波传播。这些研究表明,即使连接电导严重降低,Cx43 KO星形胶质细胞仍能够进行长距离Ca2+波信号传导,这可能保留了对神经功能至关重要的一种机制。

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Calcium waves between astrocytes from Cx43 knockout mice.来自Cx43基因敲除小鼠的星形胶质细胞之间的钙波。
Glia. 1998 Sep;24(1):65-73. doi: 10.1002/(sici)1098-1136(199809)24:1<65::aid-glia7>3.0.co;2-#.

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