Exploring the structure and nucleic acid interactions of the Leishmania sp. telomerase reverse transcriptase N-terminal region

IF 3.8 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Archives of biochemistry and biophysics Pub Date : 2025-02-01 DOI:10.1016/j.abb.2025.110289
Stephany C. Paiva , Guilherme Henrique Marchi Salvador , Patrick S. Barbosa , Hamine Cristina de Oliveira , Carlos Alexandre H. Fernandes , Carlos H.I. Ramos , Marcos Roberto de M. Fontes , Maria Isabel N. Cano
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Abstract

Leishmaniasis is a neglected tropical disease caused by protozoans of the Leishmania genus, against which no effective treatment or control is available. Like other eukaryotes, parasite telomeres are maintained by telomerase, a ribonucleoprotein complex vital for genome stability. Its protein component, TERT (telomerase reverse transcriptase), presents four structural and functional domains, with the TEN (Telomerase N-terminal) and TRBD (Telomerase RNA-binding) located at its N-terminal. The enzyme also contains an RNA component that carries the template copied by the TERT during telomere elongation. Here, we show that the tertiary structure of Leishmania major TERT (LmTERT) is conserved compared to other eukaryotes. However, the LmTERT N-terminal (LmTERT-NT) portion shows structural changes not detected in the entire protein, mainly in the TEN domain. Besides the disordered elements, the TEN gains two long β-sheets but preserves the GQ motif and the residues in β-sheet 5 that interact with the TRAP motif. In both structures, a linker flanks the TEN and TRBD. The TRBD is partially conserved in both structures and contains the canonical QFP and T motifs, invariant residues, and the putative CP and two trypanosomatid-specific motifs (TSM) besides genus-specific amino acid substitutions. Despite the structural changes, the recombinant LmTERT-NT preserves a hydrophobic cavity that binds specifically and in the picomolar range to the telomeric G-rich DNA and the TER 5′ end region. Thus, LmTERT-NT shares the canonical structural domains and motifs and is biochemically active. We discuss the importance of the TERT N-terminal region in the parasite's telomerase catalysis.

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利什曼原虫端粒酶逆转录酶n端区结构与核酸相互作用的研究。
利什曼病是一种被忽视的热带病,由利什曼原虫属的原生动物引起,目前尚无有效的治疗或控制方法。像其他真核生物一样,寄生虫的端粒是由端粒酶维持的,端粒酶是一种对基因组稳定至关重要的核糖核蛋白复合物。它的蛋白质成分TERT(端粒酶逆转录酶)具有四个结构域和功能域,其中TEN(端粒酶n端)和TRBD(端粒酶rna结合)位于其n端。这种酶还含有一种RNA成分,它携带TERT在端粒延伸过程中复制的模板。在这里,我们发现利什曼原虫主要TERT (LmTERT)的三级结构与其他真核生物相比是保守的。然而,LmTERT n端(LmTERT- nt)部分显示了整个蛋白质中未检测到的结构变化,主要是在TEN结构域。除了无序元件外,TEN获得了两个长β-片,但保留了GQ基序和β-片5中与TRAP基序相互作用的残基。在这两种结构中,一个连接体位于TEN和TRBD的两侧。TRBD在这两个结构中都是部分保守的,除了属特异性氨基酸替换外,还包含典型的QFP和T基序、不变残基、推测的CP和两个锥虫特异性基序(TSM)。尽管结构发生了变化,重组LmTERT-NT保留了一个疏水腔,可以在皮摩尔范围内特异性结合富含g的端粒DNA和ter5 '端区。因此,LmTERT-NT共享规范结构域和基序,具有生物化学活性。我们讨论了TERT n端区域在寄生虫端粒酶催化中的重要性。
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来源期刊
Archives of biochemistry and biophysics
Archives of biochemistry and biophysics 生物-生化与分子生物学
CiteScore
7.40
自引率
0.00%
发文量
245
审稿时长
26 days
期刊介绍: Archives of Biochemistry and Biophysics publishes quality original articles and reviews in the developing areas of biochemistry and biophysics. Research Areas Include: • Enzyme and protein structure, function, regulation. Folding, turnover, and post-translational processing • Biological oxidations, free radical reactions, redox signaling, oxygenases, P450 reactions • Signal transduction, receptors, membrane transport, intracellular signals. Cellular and integrated metabolism.
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The impact of oxidative stress on abnormal lipid metabolism-mediated disease development. Roles of selenium-containing glutathione peroxidases and thioredoxin reductases in the regulation of processes associated with glioblastoma progression EFFECT OF CHOLESTEROL ON THE ANTIOXIDANT ACTION OF CHLOROGENIC ACID IN LIPID MEMBRANES. Ras activation by hydrostatic pressure involves GDP release and is enhanced by GAP and GEF in vitro. Editorial Board
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