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单细胞生物中模式化套叠式表面生长的免疫学和结构证据。膜下蛋白和微管的假定作用。

Immunological and structural evidence for patterned intussusceptive surface growth in a unicellular organism. A postulated role for submembranous proteins and microtubules.

作者信息

Hofmann C, Bouck G B

出版信息

J Cell Biol. 1976 Jun;69(3):693-715. doi: 10.1083/jcb.69.3.693.

Abstract

The surface complex of Euglena has been examined intact and after isolation and purification by the use of mild sonication to disrupt cells. In intact cells the surface complex (pellicle complex) is oriented in a series of parallel ridges and grooves, and possesses among other components a characteristic group of four to seven microtubules. Isolated pellicles retain the ridge and groove pattern but no microtubules are present. Isolates yielded at least three major polypeptides on SDS acrylamide gels; one or more of the polypeptides are postulated to be identical with a submembrane layer present in both intact and isolated pellicles; one polypeptide appears to be in or on the surface membrane. Antibodies directed against the isolated pellicles were conjugated directly or indirectly to fluorescein, latex spheres, or ferritin. In appropriate experiments with these antibody conjugates, it has been found that antigenic sites are immobile and that new antigenic sites (daughter strips) are inserted between parental strips in replicating cells. These results together with direct observation of daughter strips by transmission electron microscopy suggest that surface growth in Euglena occurs by intussusception. Microtubules associated with the pellicle complex are postulated to play a role in the development of new daughter strips, and possibly also in cell movements.

摘要

利用温和超声破碎细胞的方法,对完整的以及分离纯化后的眼虫表面复合体进行了研究。在完整细胞中,表面复合体(表膜复合体)呈一系列平行的嵴和沟排列,除其他成分外,还具有一组由四到七根微管组成的特征结构。分离得到的表膜保留了嵴和沟的模式,但不存在微管。在SDS聚丙烯酰胺凝胶上,分离物产生了至少三种主要多肽;推测其中一种或多种多肽与完整和分离的表膜中存在的亚膜层相同;一种多肽似乎存在于表面膜内或表面膜上。针对分离表膜的抗体直接或间接与荧光素、乳胶球或铁蛋白偶联。在使用这些抗体偶联物的适当实验中,发现抗原位点是固定的,并且在复制细胞中,新的抗原位点(子条带)插入亲本条带之间。这些结果以及通过透射电子显微镜对条子带的直接观察表明,眼虫的表面生长是通过套叠方式进行的。推测与表膜复合体相关的微管在新子条带的形成中起作用,也可能在细胞运动中起作用。

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