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The NMR structure of the 38 kDa U1A protein - PIE RNA complex reveals the basis of cooperativity in regulation of polyadenylation by human U1A protein

机译:38 kDa U1A蛋白-PIE RNA复合物的NMR结构揭示了人类U1A蛋白调控多聚腺苷酸协同作用的基础

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The status of the poly(A) tail at the 3'-end of mRNAs controls the expression of numerous genes in response to developmental and extracellular signals. Poly(A) tail regulation requires cooperative binding of two human U1A proteins to an RNA regulatory region called the polyadenylation inhibition element (PIE). When bound to PIE RNA, U1A proteins also bind to the enzyme responsible for formation of the mature 3'-end of most eukaryotic mRNAs. poly(A) polymerase (PAP). The NMR structure of the 38 kDa complex formed between two U1A molecules and PIE RNA shows that binding cooperativity depends on helix C located at the end of the RNA-binding domain and just adjacent to the PAP-interacting domain of U1A. Since helix C undergoes a conformational change upon RNA binding, the structure shows that binding cooperativity and interactions with PAP occur only when U1A is bound to its cognate RNA. This mechanism ensures that the activity of PAP enzyme, which is essential to the cell, is only down regulated when U1A is bound to the U1A mRNA. [References: 35]
机译:mRNA的3'末端的poly(A)尾巴的状态控制着响应发育和细胞外信号的众多基因的表达。聚(A)尾部调控需要两个人类U1A蛋白与称为聚腺苷酸化抑制元件(PIE)的RNA调控区域协同结合。当与PIE RNA结合时,U1A蛋白还与负责大多数真核mRNA成熟3'末端形成的酶结合。聚(A)聚合酶(PAP)。在两个U1A分子和PIE RNA之间形成的38 kDa复合物的NMR结构表明,结合协同作用取决于螺旋C,螺旋C位于RNA结合结构域的末端,并且紧邻U1A的PAP相互作用结构域。由于螺旋C在RNA结合后发生构象变化,因此该结构表明,只有当U1A与其同源RNA结合时,结合协同作用和与PAP的相互作用才会发生。该机制确保仅当U1A与U1A mRNA结合时才下调对细胞至关重要的PAP酶的活性。 [参考:35]

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