Laboratoire de Biologie Moléculaire Végétale, Unité Ass. au CNRS 1178, Université de Grenoble I, BP 68, F-38402, Saint Martin d'Heres Cedex, France.
Planta. 1986 Dec;169(4):505-12. doi: 10.1007/BF00392099.
The transcriptionally active chromosome (TAC) of spinach (Spinacia oleracea L.) chloroplasts has been isolated at a high ionic strength, with low mechanical shearing, by glycerol gradient centrifugation. The properties of the TAC differ from those previously reported for the TAC isolated either from Euglena chloroplasts or from spinach using a low-ionic-strength solubilization medium and gel filtration. The high-salt-isolated TAC is homogenous in density but not in size and contains fewer weakly bound proteins than its lowsalt-isolated homologue. In vitro, it promotes elongation of the RNA chains previously initiated in vivo. Transcription is not limited to the ribosomal DNA. The transcriptional pattern is not strongly affected by the high-salt preparation. Ribonuclease pretreatment of the TAC, prior to the in-vitro transcription, leads to a more than tenfold increase of the transcription activity. These properties are discussed in relation to the structure of the spinach chloroplast chromosome.
菠菜叶绿体转录活跃染色体(TAC)在高离子强度下,通过低机械剪切力,经甘油梯度离心分离得到。该 TAC 的性质与先前报道的从 Euglena 叶绿体或菠菜叶绿体中分离的 TAC 不同,后者采用低盐溶解介质和凝胶过滤。高盐分离的 TAC 在密度上是均匀的,但在大小上不是均匀的,并且与低盐分离的同源物相比,它含有较少的弱结合蛋白。在体外,它促进了体内预先起始的 RNA 链的延伸。转录不受高盐制备的强烈限制。在体外转录之前,用核糖核酸酶预处理 TAC,可使转录活性增加十倍以上。这些特性与菠菜叶绿体染色体的结构有关。