Denson Joshua M, Zhang Naifu, Ball Darby, Thompson Kayla, Johnson Sean J, D'Arcy Sheena
Department of Chemistry and Biochemistry, Utah State University, Logan, UT 84322.
Department of Chemistry and Biochemistry, The University of Texas at Dallas, Richardson, TX 75080.
Proc Natl Acad Sci U S A. 2025 Jan 7;122(1):e2414980121. doi: 10.1073/pnas.2414980121. Epub 2025 Jan 3.
The TRAMP complex contains two enzymatic activities essential for RNA processing upstream of the nuclear exosome. Within TRAMP, RNA is 3' polyadenylated by a subcomplex of Trf4/5 and Air1/2 and unwound 3' to 5' by Mtr4, a DExH helicase. The molecular mechanisms of TRAMP assembly and RNA shuffling between the two TRAMP catalytic sites are poorly understood. Here, we report solution hydrogen-deuterium exchange data with thermodynamic and functional assays to uncover these mechanisms for yeast TRAMP with Trf4 and Air2 homologs. We show that TRAMP assembly constrains RNA-recognition motifs that are peripheral to catalytic sites. These include the Mtr4 Arch and Air2 zinc knuckles 1, 2, and 3. While the Air2 Arch-interacting motif likely constrains the Mtr4 Arch via transient interactions, these do not fully account for the importance of the Mtr4 Arch in TRAMP assembly. We further show that tRNA binding by single active-site subunits, Mtr4 and Trf4-Air2, differs from the double active-site TRAMP. TRAMP has reduced tRNA binding on the Mtr4 Fist and RecA2 domains, offset by increased tRNA binding on Air2 zinc knuckles 2 and 3. Competition between these RNA-binding sites may drive tRNA transfer between TRAMP subunits. We identify dynamic changes upon TRAMP assembly and RNA-recognition motifs that transfer RNA between TRAMP catalytic sites.
TRAMP复合物包含核外切体上游RNA加工所必需的两种酶活性。在TRAMP中,RNA由Trf4/5和Air1/2的亚复合物进行3' 多聚腺苷酸化,并由DExH解旋酶Mtr4从3' 到5' 解开。TRAMP组装以及RNA在两个TRAMP催化位点之间的重排的分子机制尚不清楚。在这里,我们报告了结合热力学和功能分析的溶液氢氘交换数据,以揭示酵母TRAMP与Trf4和Air2同源物的这些机制。我们表明,TRAMP组装会限制催化位点外围的RNA识别基序。这些包括Mtr4拱环和Air2锌指1、2和3。虽然Air2拱环相互作用基序可能通过瞬时相互作用限制Mtr4拱环,但这些并不能完全解释Mtr4拱环在TRAMP组装中的重要性。我们进一步表明,单个活性位点亚基Mtr4和Trf4-Air2与tRNA的结合不同于双活性位点的TRAMP。TRAMP在Mtr4的拳头结构域和RecA2结构域上的tRNA结合减少,而在Air2锌指2和3上的tRNA结合增加则抵消了这种减少。这些RNA结合位点之间的竞争可能驱动tRNA在TRAMP亚基之间转移。我们确定了TRAMP组装和RNA识别基序上的动态变化,这些变化在TRAMP催化位点之间转移RNA。