Cummings A, Barrett P, Sommerville J
Department of Biology, University of St. Andrews, U.K.
Biochim Biophys Acta. 1989 Dec 14;1014(3):319-26. doi: 10.1016/0167-4889(89)90229-2.
Messenger RNA molecules accumulated in amphibian oocytes are stabilized and blocked from translation through association with a defined set of phosphoproteins. Phosphoproteins of 60 kDa and 56 kDa (pp60 and pp56) isolated from messenger ribonucleoprotein particles of Xenopus laevis oocytes can be bound in vitro to mRNA sequences. After phospholabelling in vitro, both pp60 and pp56 show a range of ionic forms, which resolve on two-dimensional gel electrophoresis as a series of pairs with identical charge. The similarities between pp60 and pp56 in their ionic properties suggest a common protein primary structure. This suggestion gains further support from proteinase digestion analysis of pp60 and pp56: practically identical size patterns of phospholabelled fragments are generated using a range of different proteinases. However, in spite of their structural similarities, pp60 and pp56 are recognised as antigenically distinct from each other by using polyclonal antibodies. It is concluded from these, and other, observations that pp60 and pp56 are members of a family of structurally similar polypeptides which are subjected to multiple secondary modifications. Of these modifications, phosphorylation appears to be instrumental in establishing tight binding to mRNA, while antigenicity appears to be determined by some other modification. The role of microheterogeneity in the structure of RNA-binding proteins is discussed in relation to the differential activation of mRNA sequences for translation during early development.
在两栖类卵母细胞中积累的信使核糖核酸(mRNA)分子,通过与一组特定的磷蛋白结合而得以稳定,并被阻止翻译。从非洲爪蟾卵母细胞的信使核糖核蛋白颗粒中分离出的60 kDa和56 kDa的磷蛋白(pp60和pp56),在体外可与mRNA序列结合。体外进行磷标记后,pp60和pp56都呈现出一系列离子形式,在二维凝胶电泳上可解析为一系列电荷相同的成对形式。pp60和pp56在离子特性上的相似性表明它们具有共同的蛋白质一级结构。对pp60和pp56进行蛋白酶消化分析进一步支持了这一观点:使用一系列不同的蛋白酶可产生几乎相同大小模式的磷标记片段。然而,尽管它们在结构上相似,但使用多克隆抗体时,pp60和pp56在抗原性上被认为彼此不同。从这些以及其他观察结果可以得出结论,pp60和pp56是结构相似的多肽家族的成员,这些多肽会经历多种二级修饰。在这些修饰中,磷酸化似乎有助于与mRNA建立紧密结合,而抗原性似乎由其他一些修饰决定。本文结合早期发育过程中mRNA序列翻译的差异激活,讨论了微观异质性在RNA结合蛋白结构中的作用。