Brissette J L, Kumar N M, Gilula N B, Hall J E, Dotto G P
Department of Dermatology, Harvard Medical School, Charlestown, MA 02129.
Proc Natl Acad Sci U S A. 1994 Jul 5;91(14):6453-7. doi: 10.1073/pnas.91.14.6453.
Gap junctional communication provides a mechanism for regulating multicellular activities by allowing the exchange of small diffusible molecules between neighboring cells. The diversity of gap junction proteins may exist to form channels that have different permeability properties. We report here that induction of terminal differentiation in mouse primary keratinocytes by calcium results in a specific switch in gap junction protein expression. Expression of alpha 1 (connexin 43) and beta 2 (connexin 26) gap junction proteins is down-modulated, whereas that of beta 3 (connexin 31) and beta 4 (connexin 31.1) proteins is induced. Although both proliferating and differentiating keratinocytes are electrically coupled, there are significant changes in the permeability properties of the junctions to small molecules. In parallel with the changes in gap junction protein expression during differentiation, the intercellular transfer of the small dyes neurobiotin, carboxyfluorescein, and Lucifer yellow is significantly reduced, whereas that of small metabolites, such as nucleotides and amino acids, proceeds unimpeded. Thus, a switch in gap junction protein expression in differentiating keratinocytes is accompanied by selective changes in junctional permeability that may play an important role in the coordinate control of the differentiation process.
间隙连接通讯通过允许相邻细胞间交换可扩散的小分子,为调节多细胞活动提供了一种机制。间隙连接蛋白的多样性可能是为了形成具有不同通透性的通道。我们在此报告,钙诱导小鼠原代角质形成细胞终末分化会导致间隙连接蛋白表达发生特异性转换。α1(连接蛋白43)和β2(连接蛋白26)间隙连接蛋白的表达下调,而β3(连接蛋白31)和β4(连接蛋白31.1)蛋白的表达被诱导。尽管增殖和分化的角质形成细胞均存在电偶联,但连接对小分子的通透性特性发生了显著变化。在分化过程中间隙连接蛋白表达发生变化的同时,小分子染料神经生物素、羧基荧光素和路西法黄的细胞间转运显著减少,而小分子代谢物如核苷酸和氨基酸的转运则不受影响。因此,分化的角质形成细胞中间隙连接蛋白表达的转换伴随着连接通透性的选择性变化,这可能在分化过程的协调控制中起重要作用。