首页> 美国卫生研究院文献>The EMBO Journal >Detection and developmental regulation of the mRNA for the regulatory subunit of the cAMP-dependent protein kinase of D. discoideum by cell-free translation.
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Detection and developmental regulation of the mRNA for the regulatory subunit of the cAMP-dependent protein kinase of D. discoideum by cell-free translation.

机译:通过无细胞翻译检测D.discoideum的cAMP依赖性蛋白激酶调节亚基的mRNA的检测和发育调控。

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摘要

cAMP is an important effector of the development of Dictyostelium discoideum amoebae and could exert its effects on gene expression through the cytosolic cAMP-dependent protein kinase (cAK). Antibodies, specific for the regulatory subunit (R) of the cAK, were used to investigate the developmental regulation of the corresponding mRNA (R-mRNA) by in vitro translation and immunoprecipitation. Under such conditions, a single polypeptide of the same mol. wt. as R (42 kd) is detected, showing that the protein is not synthesized as a large precursor. The level of the R-mRNA, which is low in vegetative cells, increases 10- to 20-fold during the first hours of development. Its expression is stimulated by the treatment of AX3 cells with cAMP either added to a concentration of 1 mM or given as 0.1 microM pulses every 5 min, whereas such treatments have little or no effect in cells of strain AX2. The R-mRNA remains highly expressed (0.01-0.03% of translatable mRNA) throughout post-aggregative development; it is not affected by mechanical disaggregation of the multicellular organism. The parallel developmental time courses of the translatable R-mRNA and the R protein produced in vivo suggest that the expression of this polypeptide is regulated at the level of mRNA synthesis.
机译:cAMP是变形双歧杆菌的发展的重要影响者,并可能通过胞质cAMP依赖性蛋白激酶(cAK)对基因表达产生影响。使用特异性针对cAK调节亚基(R)的抗体,通过体外翻译和免疫沉淀研究相应mRNA(R-mRNA)的发育调控。在这样的条件下,相同摩尔的单个多肽。重量检测到R(42 kd),表明该蛋白未合成为大前体。营养细胞中低水平的R-mRNA水平在发育的最初几个小时内增加了10到20倍。通过用浓度为1 mM的cAMP处理AX3 AX3细胞来刺激其表达,或者每5分钟以0.1 microM脉冲给予cAMP,而这种处理对AX2菌株的细胞几乎没有影响。在整个聚合后发育过程中,R-mRNA仍高表达(可翻译mRNA的0.01-0.03%);它不受多细胞生物机械分解的影响。可翻译的R-mRNA和体内产生的R蛋白的平行发育时间过程表明,该多肽的表达在mRNA合成水平受到调控。

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