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节肢动物的间隙连接和类间隙连接:分离与初步生化分析。

The arthropod gap junction and pseudo-gap junction: isolation and preliminary biochemical analysis.

作者信息

Berdan R C, Gilula N B

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, Texas.

出版信息

Cell Tissue Res. 1988 Feb;251(2):257-74. doi: 10.1007/BF00215833.

Abstract

The hepatopancreas of the crayfish, Procambarus clarkii, contains an unusual abundance of gap junctions, suggesting that this tissue might provide an ideal source from which to isolate the arthropod-type of gap junction. A membrane fraction obtained by subcellular fractionation of this organ contained smooth septate junctions, zonulae adhaerentes, gap junctions and pentalaminar membrane structures (pseudo-gap junctions) as determined by electron microscopy. A further enrichment of plasma membranes and gap junctions was achieved by the use of linear sucrose gradients and extraction with 5 mM NaOH. The enrichment of gap junctions correlated with the enrichment of a 31 Kd protein band on polyacrylamide gels. Extraction with greater than or equal to 20 mM NaOH or greater than or equal to 0.5% (w/v) Sarkosyl NL97 resulted in the disruption and/or solubilization of gap junctions. Negative staining revealed a uniform population of 9.6 nm diameter subunits within the gap junctions with an apparent sixfold symmetry. Using antisera to the major gap junctional protein of rat liver (32 Kd) and to the lens membrane protein (MP 26), we failed to detect any homologous antigenic components in the arthropod material by immunoblotting-enriched gap junction fractions or by immunofluorescence on tissue sections. The enrichment of another membrane structure (pseudo-gap junctions), closely resembling a gap junction, correlated with the enrichment of two protein bands, 17 and 16 Kd, on polyacrylamide gels. These structures appeared to have originated from intracellular myelin-like figures in phagolysosomal structures. They could be distinguished from gap junctions on the basis of their thickness, detergent-alkali insolubility, and lack of association with other plasma membrane structures, such as the septate junction. Pseudo-gap junctions may be related to a class of pentalaminar contacts among membranes involved in intracellular fusion in many eukaryotic cell types. We conclude that pseudo-gap junctions and gap junctions are different cellular structures, and that gap junctions from this arthropod tissue are uniquely different from mammalian gap junctions of rat liver in their detergent-alkali solubility, equilibrium density on sucrose gradients, and protein content (antigenic properties).

摘要

克氏原螯虾的肝胰腺含有异常丰富的间隙连接,这表明该组织可能是分离节肢动物型间隙连接的理想来源。通过对该器官进行亚细胞分级分离得到的膜组分,经电子显微镜鉴定含有平滑分隔连接、黏着小带、间隙连接和五片层膜结构(假间隙连接)。通过使用线性蔗糖梯度和用5 mM氢氧化钠提取,进一步富集了质膜和间隙连接。间隙连接的富集与聚丙烯酰胺凝胶上一条31 Kd蛋白带的富集相关。用大于或等于20 mM氢氧化钠或大于或等于0.5%(w/v)的十二烷基肌氨酸钠(Sarkosyl NL97)提取会导致间隙连接的破坏和/或溶解。负染显示间隙连接内有直径为9.6 nm的均匀亚基群体,具有明显的六重对称性。使用针对大鼠肝脏主要间隙连接蛋白(32 Kd)和晶状体膜蛋白(MP 26)的抗血清,我们通过对富集的间隙连接组分进行免疫印迹或对组织切片进行免疫荧光,未能在节肢动物材料中检测到任何同源抗原成分。另一种与间隙连接非常相似的膜结构(假间隙连接)的富集,与聚丙烯酰胺凝胶上两条蛋白带(17 Kd和16 Kd)的富集相关。这些结构似乎起源于吞噬溶酶体结构中的细胞内髓鞘样结构。它们可以根据其厚度、去污剂 - 碱不溶性以及与其他质膜结构(如分隔连接)缺乏关联而与间隙连接区分开来。假间隙连接可能与许多真核细胞类型中参与细胞内融合的膜之间的一类五片层接触有关。我们得出结论,假间隙连接和间隙连接是不同的细胞结构,并且来自这种节肢动物组织的间隙连接在去污剂 - 碱溶解性、蔗糖梯度上的平衡密度以及蛋白质含量(抗原特性)方面与大鼠肝脏的哺乳动物间隙连接有独特的差异。

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