DKFZ-ZMBH Alliance, Center for Molecular Biology of Heidelberg University (ZMBH), Heidelberg, Germany.
PLoS One. 2021 Nov 22;16(11):e0258903. doi: 10.1371/journal.pone.0258903. eCollection 2021.
Most transcription in Trypanosoma brucei is constitutive and polycistronic. Consequently, the parasite relies on post-transcriptional mechanisms, especially affecting translation initiation and mRNA decay, to control gene expression both at steady-state and for adaptation to different environments. The parasite has six isoforms of the cap-binding protein EIF4E as well as five EIF4Gs. EIF4E1 does not bind to any EIF4G, instead being associated with a 4E-binding protein, 4EIP. 4EIP represses translation and reduces the stability of a reporter mRNA when artificially tethered to the 3'-UTR, whether or not EIF4E1 is present. 4EIP is essential during the transition from the mammalian bloodstream form to the procyclic form that lives in the Tsetse vector. In contrast, EIF4E1 is dispensable during differentiation, but is required for establishment of growing procyclic forms. In Leishmania, there is some evidence that EIF4E1 might be active in translation initiation, via direct recruitment of EIF3. However in T. brucei, EIF4E1 showed no detectable association with other translation initiation factors, even in the complete absence of 4EIP. There was some evidence for interactions with NOT complex components, but if these occur they must be weak and transient. We found that EIF4E1is less abundant in the absence of 4EIP, and RNA pull-down results suggested this might occur through co-translational complex assembly. We also report that 4EIP directly recruits the cytosolic terminal uridylyl transferase TUT3 to EIF4E1/4EIP complexes. There was, however, no evidence that TUT3 is essential for 4EIP function.
大多数转录在布氏锥虫中是组成型的和多顺反子的。因此,寄生虫依赖于转录后机制,特别是影响翻译起始和 mRNA 降解,以控制基因表达,无论是在稳态下还是适应不同的环境。寄生虫有六种 EIF4E 的同工型以及五种 EIF4Gs。EIF4E1 不与任何 EIF4G 结合,而是与 4E 结合蛋白 4EIP 结合。当 4EIP 被人为地连接到 3'-UTR 时,无论是否存在 EIF4E1,它都会抑制翻译并降低报告 mRNA 的稳定性。在从哺乳动物血液形式到生活在采采蝇媒介中的前鞭毛体形式的过渡期间,4EIP 是必不可少的。相比之下,EIF4E1 在分化过程中是可有可无的,但对于建立生长前鞭毛体形式是必需的。在利什曼原虫中,有一些证据表明 EIF4E1 可能通过直接招募 EIF3 参与翻译起始。然而,在布氏锥虫中,EIF4E1 与其他翻译起始因子没有检测到可检测的关联,即使在完全没有 4EIP 的情况下也是如此。有一些与 NOT 复合物成分相互作用的证据,但如果存在,这些相互作用必须很弱且短暂。我们发现,在没有 4EIP 的情况下,EIF4E1 的丰度较低,RNA 下拉结果表明这可能是通过共翻译复合物组装发生的。我们还报告说,4EIP 直接招募细胞质末端尿苷酰转移酶 TUT3 到 EIF4E1/4EIP 复合物。然而,没有证据表明 TUT3 是 4EIP 功能所必需的。