Lord B A, DiBona D R
J Cell Biol. 1976 Dec;71(3):967-72. doi: 10.1083/jcb.71.3.967.
A comparison of the distribution of septate junctions in invertebrate epithelia and tight junctions in vertebrate systems suggests that these structures may be functionally analogous. This proposition is supported by the internal design of each junction which constitutes a serial arrangement of structures crossing the intercellular space between cells to effectively provide resistance to the paracellular flow of water and small molecules. We have tested the validity of such an analogy by examining whether the osmotic sensitivity of the septate junctions of planarian epidermis follow the rather striking pattern observed for the junctions of very tight vertebrate epithelia (e.g. toad urinary bladder). It has been found that the septate junctions in this system respond in similar fashion to their vertebrate counterparts, blistering with accumulated fluid when the medium outside the epidermis is made hypertonic with small, water-soluble molecules. We conclude that the two types of junction probably are functionally analogous and that, in each case, this rectified structural response to transepithelial osmotic gradients may be indicative of the role of such structures in the transport function of epithelia.
对无脊椎动物上皮组织中分隔连接的分布与脊椎动物系统中紧密连接的分布进行比较后发现,这些结构在功能上可能具有相似性。每个连接的内部设计支持了这一观点,这种设计构成了一系列跨越细胞间间隙的结构排列,从而有效地阻止水和小分子的细胞旁流动。我们通过研究涡虫表皮的分隔连接的渗透敏感性是否遵循在紧密的脊椎动物上皮组织(如蟾蜍膀胱)的连接中观察到的相当显著的模式,来检验这种相似性的有效性。结果发现,该系统中的分隔连接与其脊椎动物对应物的反应方式相似,当表皮外的介质用小的水溶性分子制成高渗时,会因积聚液体而起泡。我们得出结论,这两种类型的连接可能在功能上相似,并且在每种情况下,这种对跨上皮渗透梯度的矫正结构反应可能表明此类结构在上皮组织运输功能中的作用。