Lan Zheng, Kurata Wendy E, Martyn Kendra D, Jin Chengshi, Lau Alan F
Natural Products and Cancer Biology Program, Cancer Research Center of Hawaii, Honolulu, Hawaii 96813, USA.
Biochemistry. 2005 Feb 22;44(7):2385-96. doi: 10.1021/bi048306w.
Gap junctions play critical roles in tissue function and homeostasis. Connexin43 (Cx43) is a major gap junction protein expressed in the mammalian heart and other tissues and may be regulated by its interaction with other cellular proteins. Using the yeast two-hybrid screen, we identified a novel Cx43-interacting protein of 85-kDa, CIP85, which contains a single TBC, SH3, and RUN domain, in addition to a short coiled coil region. Homologues containing this unique combination of domains were found in human, D. melanogaster, and C. elegans. CIP85 mRNA is expressed ubiquitously in mouse and human tissues. In vitro interaction assays and in vivo co-immunoprecipitation experiments confirmed the interaction of endogenous CIP85 with Cx43. In vitro interaction experiments using CIP85 mutants with in-frame deletions of the TBC, SH3, and RUN domains indicated that the SH3 domain of CIP85 is involved in its interaction with Cx43. Conversely, analysis of Cx43 mutants with proline to alanine substitutions in the two proline-rich regions of Cx43 revealed that the P(253)LSP(256) motif is an important determinant of the ability of Cx43 to interact with CIP85. Laser-scanning confocal microscopy showed that CIP85 colocalized with Cx43 at the cell periphery, particularly in areas reminiscent of gap junction plaques. The functional importance of the interaction between CIP85 and Cx43 was suggested by the observation that CIP85 appears to induce the turnover of Cx43 through the lysosomal pathway.
间隙连接在组织功能和内环境稳态中发挥着关键作用。连接蛋白43(Cx43)是在哺乳动物心脏和其他组织中表达的一种主要间隙连接蛋白,其可能通过与其他细胞蛋白的相互作用而受到调控。利用酵母双杂交筛选,我们鉴定出一种新的与Cx43相互作用的85 kDa蛋白CIP85,除了一个短的卷曲螺旋区域外,它还包含一个单一的TBC、SH3和RUN结构域。在人类、黑腹果蝇和秀丽隐杆线虫中发现了含有这种独特结构域组合的同源物。CIP85 mRNA在小鼠和人类组织中广泛表达。体外相互作用分析和体内免疫共沉淀实验证实了内源性CIP85与Cx43之间的相互作用。使用TBC、SH3和RUN结构域框内缺失的CIP85突变体进行的体外相互作用实验表明,CIP85的SH3结构域参与其与Cx43的相互作用。相反,对Cx43两个富含脯氨酸区域中脯氨酸被丙氨酸取代的Cx43突变体的分析表明,P(253)LSP(256)基序是Cx43与CIP85相互作用能力的重要决定因素。激光扫描共聚焦显微镜显示,CIP85与Cx43在细胞周边共定位,特别是在类似于间隙连接斑块的区域。CIP85似乎通过溶酶体途径诱导Cx43的周转,这一观察结果提示了CIP85与Cx43之间相互作用的功能重要性。