Nothwang H G, Coux O, Bey F, Scherrer K
Institut Jacques Monod, CNRS, Université Paris 7, France.
Eur J Biochem. 1992 Jul 15;207(2):621-30. doi: 10.1111/j.1432-1033.1992.tb17089.x.
Prosomes were first described as being mRNA-associated RNP (ribonucleoprotein) particles and subcomponents of repressed mRNPs (messenger ribonucleoprotein). We show here that prosomes isolated from translationally inactive mRNP have a protease activity identical to that described by others for the multicatalytic proteinase complex (MCP, 'proteasome'). By RNase or non-ionic detergent treatment, the MCP activity associated with repressed non-globin mRNP from avian erythroblasts, sedimenting at 35 S, could be quantitatively shifted on sucrose gradients to the 19-S sedimentation zone characteristic of prosomes, which were identified by monoclonal antibodies. The presence of small RNA in the enzymatic complex was shown by immunoprecipitation of the protease activity out of dissociated mRNP using a mixture of anti-prosome monoclonal antibodies; a set of small RNAs 80-120 nucleotides long was isolated from the immunoprecipitate. Furthermore, on CsCl gradients, colocalisation of the MCP activity with prosomal proteins and prosomal RNA was found, and no difference in the prosomal RNA pattern was observed whether the particles were fixed or not prior to centrifugation. These data indicate that the MCP activity is a property of prosomes, shown to be in part RNP and subcomplexes of in vivo untranslated mRNP. A hypothesis for the role of the prosome-MCP particles in maintaining homeostasis of specific protein levels is proposed.
核小体最初被描述为与mRNA相关的核糖核蛋白(RNP)颗粒以及被抑制的信使核糖核蛋白(mRNP)的亚组分。我们在此表明,从翻译无活性的mRNP中分离出的核小体具有一种蛋白酶活性,该活性与其他人所描述的多催化蛋白酶复合物(MCP,即“蛋白酶体”)的活性相同。通过核糖核酸酶或非离子去污剂处理,与来自禽成红细胞的被抑制的非珠蛋白mRNP相关的、沉降系数为35S的MCP活性,在蔗糖梯度上可定量地转移至核小体特有的19S沉降区,核小体通过单克隆抗体得以鉴定。使用抗核小体单克隆抗体混合物从解离的mRNP中免疫沉淀蛋白酶活性,从而证明了酶复合物中存在小RNA;从免疫沉淀物中分离出了一组长度为80 - 120个核苷酸的小RNA。此外,在氯化铯梯度上,发现MCP活性与核小体蛋白和核小体RNA共定位,并且在离心前颗粒是否固定的情况下,核小体RNA模式均未观察到差异。这些数据表明,MCP活性是核小体的一种特性,已证明其部分为RNP且是体内未翻译的mRNP的亚复合物。本文提出了一个关于核小体 - MCP颗粒在维持特定蛋白质水平稳态中作用的假说。