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Trimeric structure for an essential protein in L1 retrotransposition

机译:L1逆转座中必需蛋白的三聚体结构

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Twp proteins are encoded by the mammalian retrotransposon long interspersed nuclear element 1 (LINE-1 or L1); both are essential for retrotransposition. The function of the protein encoded by the 5′-most ORF, ORF1p, is incompletely understood, although the ORF1p from mouse L1 is known to bind single-stranded nucleic acids and function as a nucleic acid chaperone. ORF1p self-associates by means of a long coiled-coil domain in the N-terminal region of the protein, and the basic, C-terminal region (C-1/3 domain) contains the nucleic acid binding activity. The full-length and C-1/3 domains of ORF1p were purified to near homogeneity then analyzed by gel filtration chromatography and analytical ultracentrifugation. Both proteins were structurally homogeneous and asymmetric in solution, with the full-length version forming a stable trimer and the C-1/3 domain remaining a monomer. Examination of the full-length protein by atomic force microscopy revealed an asymmetric dumbbell shape, congruent with the chromatography and ultracentrifugation results. These structural features are compatible with the nucleic acid binding and chaperone activities of L1 ORF1p and offer further insight into the functions of this unique protein during LINE-1 retrotransposition.
机译:Twp蛋白由哺乳动物反转录转座子长散布的核元件1(LINE-1或L1)编码;两者对于逆转座都是必不可少的。尽管已知来自小鼠L1的ORF1p结合单链核酸并起核酸伴侣的作用,但是最不完整的5'ORF编码的蛋白质的功能ORF1p的功能尚不完全清楚。 ORF1p通过蛋白质N端区域中的长螺旋线圈结构域自缔合,而基本的C端区域(C-1 / 3结构域)则具有核酸结合活性。将ORF1p的全长和C-1 / 3结构域纯化至接近均一,然后通过凝胶过滤色谱和分析超离心进行分析。两种蛋白质在溶液中均在结构上均质且不对称,全长形式形成稳定的三聚体,而C-1 / 3结构域仍为单体。通过原子力显微镜检查全长蛋白质显示出不对称的哑铃形状,与色谱和超速离心结果一致。这些结构特征与L1 ORF1p的核酸结合和分子伴侣活性兼容,并提供了对该独特蛋白在LINE-1逆转座子过程中的功能的进一步了解。

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