Ganot P, Caizergues-Ferrer M, Kiss T
Laboratoire de Biologie Moléculaire Eucaryote du Centre National de laRecherche (CNRS), Université Paul Sabatier, Toulouse, France.
Genes Dev. 1997 Apr 1;11(7):941-56. doi: 10.1101/gad.11.7.941.
Eukaryotic cells contain a large number of small nucleolar RNAs (snoRNAs). A major family of snoRNAs features a consensus ACA motif positioned 3 nucleotides from the 3' end of the RNA. In this study we have characterized nine novel human ACA snoRNAs (U64-U72). Structural probing of U64 RNA followed by systematic computer modeling of all known box ACA snoRNAs revealed that this class of snoRNAs is defined by a phylogenetically conserved secondary structure. The ACA snoRNAs fold into two hairpin structures connected by a single-stranded hinge region and followed by a short 3' tail. The hinge region carries an evolutionarily conserved sequence motif, called box H (consensus, AnAnnA). The H box, probably in concert with the flanking helix structures and the ACA box characterized previously, plays an essential role in the accumulation of human U64 intronic snoRNA. The correct processing of a yeast ACA snoRNA, snR36, in mammalian cells demonstrated that the cis- and trans-acting elements required for processing and accumulation of ACA snoRNAs are evolutionarily conserved. The notion that ACA snoRNAs share a common secondary structure and conserved box elements that likely function as binding sites for common proteins (e.g., GAR1) suggests that these RNAs possess closely related nucleolar functions.
真核细胞含有大量小核仁RNA(snoRNA)。snoRNA的一个主要家族具有一个共有ACA基序,位于RNA 3'端的3个核苷酸处。在本研究中,我们鉴定了9种新的人类ACA snoRNA(U64 - U72)。对U64 RNA进行结构探测,随后对所有已知的盒式ACA snoRNA进行系统的计算机建模,结果表明这类snoRNA由系统发育上保守的二级结构所定义。ACA snoRNA折叠成两个发夹结构,由一个单链铰链区连接,后面跟着一个短的3'尾巴。铰链区带有一个进化上保守的序列基序,称为盒H(共有序列,AnAnnA)。H盒可能与侧翼螺旋结构以及先前表征的ACA盒协同作用,在人类U64内含子snoRNA的积累中起重要作用。酵母ACA snoRNA snR36在哺乳动物细胞中的正确加工表明,ACA snoRNA加工和积累所需的顺式和反式作用元件在进化上是保守的。ACA snoRNA具有共同的二级结构和保守的盒元件,这些元件可能作为共同蛋白质(如GAR1)的结合位点,这一观点表明这些RNA具有密切相关的核仁功能。