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本文引用的文献

1
Heteromeric connexons formed by the lens connexins, connexin43 and connexin56.由晶状体连接蛋白、连接蛋白43和连接蛋白56形成的异聚连接子。
Eur J Cell Biol. 2001 Jan;80(1):11-9. doi: 10.1078/0171-9335-00132.
2
Functional expression of the new gap junction gene connexin47 transcribed in mouse brain and spinal cord neurons.在小鼠脑和脊髓神经元中转录的新间隙连接基因连接蛋白47的功能表达。
J Neurosci. 2001 Feb 15;21(4):1117-26. doi: 10.1523/JNEUROSCI.21-04-01117.2001.
3
Phosphorylation of connexin43 on serine368 by protein kinase C regulates gap junctional communication.蛋白激酶C对连接蛋白43丝氨酸368位点的磷酸化作用可调节缝隙连接通讯。
J Cell Biol. 2000 Jun 26;149(7):1503-12. doi: 10.1083/jcb.149.7.1503.
4
Clustering of connexin 43-enhanced green fluorescent protein gap junction channels and functional coupling in living cells.活细胞中连接蛋白43增强型绿色荧光蛋白间隙连接通道的聚集及功能偶联
Proc Natl Acad Sci U S A. 2000 Mar 14;97(6):2556-61. doi: 10.1073/pnas.050588497.
5
Voltage gating of Cx43 gap junction channels involves fast and slow current transitions.Cx43间隙连接通道的电压门控涉及快速和慢速电流转变。
Pflugers Arch. 2000 Jan;439(3):248-50. doi: 10.1007/s004249900182.
6
Connexin 50 mutation in a family with congenital "zonular nuclear" pulverulent cataract of Pakistani origin.巴基斯坦裔家族性先天性“板层核性”粉末状白内障中的连接蛋白50突变
Hum Genet. 1999 Jul-Aug;105(1-2):168-70. doi: 10.1007/s004399900094.
7
Molecular dissection of transjunctional voltage dependence in the connexin-32 and connexin-43 junctions.连接蛋白32和连接蛋白43连接处跨连接电压依赖性的分子剖析
Biophys J. 1999 Sep;77(3):1374-83. doi: 10.1016/S0006-3495(99)76986-9.
8
Biophysical properties of mouse connexin30 gap junction channels studied in transfected human HeLa cells.在转染的人HeLa细胞中研究的小鼠连接蛋白30间隙连接通道的生物物理特性。
J Physiol. 1999 Sep 15;519 Pt 3(Pt 3):631-44. doi: 10.1111/j.1469-7793.1999.0631n.x.
9
Molecular mechanism underlying a Cx50-linked congenital cataract.Cx50相关先天性白内障的分子机制
Am J Physiol. 1999 Jun;276(6):C1443-6. doi: 10.1152/ajpcell.1999.276.6.C1443.
10
Voltage dependence of macroscopic and unitary currents of gap junction channels formed by mouse connexin50 expressed in rat neuroblastoma cells.在大鼠神经母细胞瘤细胞中表达的小鼠连接蛋白50所形成的缝隙连接通道的宏观电流和单通道电流的电压依赖性
J Physiol. 1999 Jun 15;517 ( Pt 3)(Pt 3):673-89. doi: 10.1111/j.1469-7793.1999.0673s.x.

人连接蛋白50羧基末端结构域在缝隙连接通道中的功能作用。

Functional role of the carboxyl terminal domain of human connexin 50 in gap junctional channels.

作者信息

Xu X, Berthoud V M, Beyer E C, Ebihara L

机构信息

Department of Physiology and Biophysics, Finch University of Health Science/The Chicago Medical School, 3333 Green Bay Rd, North Chicago, IL 60064, USA.

出版信息

J Membr Biol. 2002 Mar 15;186(2):101-12. doi: 10.1007/s00232-001-0139-5.

DOI:10.1007/s00232-001-0139-5
PMID:11944087
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2744361/
Abstract

Gap junction channels formed by connexin 50 (Cx50) are critical for maintenance of lens transparency. Because the C-terminus of Cx50 can be cleaved post-translationally, we hypothesized that channels formed by the truncated Cx50 exhibit altered properties or regulation. We used the dual whole-cell patch-clamp technique to investigate the macroscopic and single-channel properties of gap junctional channels formed by wild-type human Cx50 and a truncation mutant (Cx50A294stop) after transfection of N2A cells. Our results show that wild-type Cx50 formed functional gap junctional channels. The macroscopic Gjss-Vj relationship was well described by a Boltzmann equation with A of 0.10, V0 of 43.8 mV and Gjmin of 0.23. The single-channel conductance was 212 +/- 5 pS. Multiple long-lasting substates were observed with conductances ranging between 31 and 80 pS. Wild-type Cx50 gap junctional channels were reversibly blocked when pHi was reduced to 6.3. Truncating the C-terminus at amino acid 294 caused a loss of pHi sensitivity, but there were no significant changes in single-channel current amplitude or Gjss-Vj relationship. These results suggest that the C-terminus of human Cx50 is involved in pHi sensitivity, but has little influence over single-channel conductance, voltage dependence, or gating kinetics.

摘要

由连接蛋白50(Cx50)形成的缝隙连接通道对于维持晶状体透明度至关重要。由于Cx50的C末端可在翻译后被切割,我们推测由截短的Cx50形成的通道表现出改变的特性或调节。我们使用双全细胞膜片钳技术研究了野生型人Cx50和截短突变体(Cx50A294stop)在转染N2A细胞后形成的缝隙连接通道的宏观和单通道特性。我们的结果表明,野生型Cx50形成了功能性缝隙连接通道。宏观Gjss-Vj关系可用玻尔兹曼方程很好地描述,A为0.10,V0为43.8 mV,Gjmin为0.23。单通道电导为212±5 pS。观察到多个持续时间长的亚状态,电导范围在31至80 pS之间。当细胞内pH值降至6.3时,野生型Cx50缝隙连接通道被可逆性阻断。在第294位氨基酸处截短C末端导致细胞内pH值敏感性丧失,但单通道电流幅度或Gjss-Vj关系没有显著变化。这些结果表明,人Cx50的C末端参与细胞内pH值敏感性,但对单通道电导、电压依赖性或门控动力学影响很小。