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心脏间隙连接蛋白连接蛋白45和43的pH敏感性。

pH sensitivity of the cardiac gap junction proteins, connexin 45 and 43.

作者信息

Hermans M M, Kortekaas P, Jongsma H J, Rook M B

机构信息

Department of Medical Physiology and Sports Medicine, University of Utrecht, P.O. Box 80043, 3508 TA Utrecht, The Netherlands.

出版信息

Pflugers Arch. 1995 Nov;431(1):138-40. doi: 10.1007/BF00374389.

Abstract

. Intercellular communication through gap junction channels can be regulated by changes in intracellular pH (pHi). This regulation may play an important role in ischemic heart tissue. Using the dual voltage-clamp technique, we compared the pHi sensitivity of gap junction channels composed of connexin 43 (Cx43) and Cx45, two of the gap junction proteins that are expressed in heart. We made use of SKHep1 cells, endogenously expressing low levels of Cx45 and SKHep1 cells stably transfected with rat Cx43. To manipulate the pHi we applied the NH3/NH+4 pH-clamp method. At pHi 6.7 the gj of Cx45 channels was reduced to approximately 20% of control values (pHi 7.0) and at pHi 6.3 all channels closed. The gj of Cx43 channels was approximately 70% of control values at pHi 6.7 and approximately 40% at pHi 6.3. Cx43 channels closed at pHi 5.8. Single channel conductances were 17.8 pS for Cx45 and 40.8 pS for Cx43 at pHi 7.0 and did not change significantly at lower pHi. This suggests that the decrease in macroscopic conductance observed at low pHi results from the decrease in open probability of gap junctional channels rather than from a decrease in single channel conductance. Our results demonstrate that gap junction channels built of Cx45 are far more pH sensitive than channels built of Cx43.

摘要

通过间隙连接通道进行的细胞间通讯可受细胞内pH值(pHi)变化的调节。这种调节可能在缺血性心脏组织中起重要作用。我们使用双电压钳技术,比较了由连接蛋白43(Cx43)和Cx45组成的间隙连接通道的pHi敏感性,这两种间隙连接蛋白在心脏中表达。我们利用了内源性表达低水平Cx45的SKHep1细胞和稳定转染大鼠Cx43的SKHep1细胞。为了操纵pHi,我们应用了NH3/NH+4 pH钳制方法。在pHi 6.7时,Cx45通道的gj降低至对照值(pHi 7.0)的约20%,在pHi 6.3时所有通道关闭。在pHi 6.7时,Cx43通道的gj约为对照值的70%,在pHi 6.3时约为40%。Cx43通道在pHi 5.8时关闭。在pHi 7.0时,Cx45的单通道电导为17.8 pS,Cx43为40.8 pS,在较低pHi时无明显变化。这表明在低pHi时观察到的宏观电导降低是由于间隙连接通道开放概率降低而非单通道电导降低所致。我们的结果表明,由Cx45构建的间隙连接通道比由Cx43构建的通道对pH更敏感。

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