Department of Molecular Biophysics & Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06520, USA.
RNA. 2010 Nov;16(11):2156-69. doi: 10.1261/rna.2359810. Epub 2010 Sep 30.
The SSU processome is a large ribonucleoprotein complex consisting of the U3 snoRNA and at least 43 proteins. A database search, initiated in an effort to discover additional SSU processome components, identified the uncharacterized, conserved and essential yeast nucleolar protein YIL091C/UTP25 as one such candidate. The C-terminal DUF1253 motif, a domain of unknown function, displays limited sequence similarity to DEAD-box RNA helicases. In the absence of the conserved DEAD-box sequence, motif Ia is the only clearly identifiable helicase element. Since the yeast homolog is nucleolar and interacts with components of the SSU processome, we examined its role in pre-rRNA processing. Genetic depletion of Utp25 resulted in slowed growth. Northern analysis of pre-rRNA revealed an 18S rRNA maturation defect at sites A₀, A₁, and A₂. Coimmunoprecipitation confirmed association with U3 snoRNA and with Mpp10, and with components of the t-Utp/UtpA, UtpB, and U3 snoRNP subcomplexes. Mutation of the conserved motif Ia residues resulted in no discernable temperature-sensitive or cold-sensitive growth defects, implying that this motif is dispensable for Utp25 function. A yeast two-hybrid screen of Utp25 against other SSU processome components revealed several interacting proteins, including Mpp10, Utp3, and Utp21, thereby identifying the first interactions among the different subcomplexes of the SSU processome. Furthermore, the DUF1253 domain is required and sufficient for the interaction of Utp25 with Utp3. Thus, Utp25 is a novel SSU processome component that, along with Utp3, forms the first identified interactions among the different SSU processome subcomplexes.
SSU 加工体是一个由 U3 snoRNA 和至少 43 种蛋白组成的大型核糖核蛋白复合物。为了发现更多的 SSU 加工体组分,我们进行了数据库搜索,结果发现了一个未被描述的、保守的和必需的酵母核仁蛋白 YIL091C/UTP25,它是候选蛋白之一。C 端的 DUF1253 基序是一个未知功能的结构域,与 DEAD-box RNA 解旋酶具有有限的序列相似性。虽然缺少保守的 DEAD-box 序列,但 motif Ia 是唯一可识别的解旋酶元件。由于酵母同源物位于核仁中,并与 SSU 加工体的组分相互作用,我们研究了其在 pre-rRNA 加工中的作用。Utp25 的基因缺失导致生长缓慢。pre-rRNA 的 Northern 分析显示 A₀、A₁ 和 A₂ 位点的 18S rRNA 成熟缺陷。共免疫沉淀证实了与 U3 snoRNA 以及与 Mpp10 的结合,以及与 t-Utp/UtpA、UtpB 和 U3 snoRNP 亚复合物的组分的结合。保守 motif Ia 残基的突变没有导致可察觉的温度敏感或冷敏感生长缺陷,这意味着该基序对于 Utp25 的功能是可有可无的。用 Utp25 进行酵母双杂交筛选其他 SSU 加工体组分,发现了几个相互作用的蛋白,包括 Mpp10、Utp3 和 Utp21,从而鉴定了 SSU 加工体不同亚复合物之间的首次相互作用。此外,DUF1253 结构域是 Utp25 与 Utp3 相互作用所必需和充分的。因此,Utp25 是 SSU 加工体的一个新组分,它与 Utp3 一起形成了不同 SSU 加工体亚复合物之间的首次鉴定的相互作用。