Structure of the prenyltransferase in bifunctional copalyl diphosphate synthase from Penicillium fellutanum reveals an open hexamer conformation

IF 3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Matthew N. Gaynes , Trey A. Ronnebaum , Kollin Schultz , Jacque L. Faylo , Ronen Marmorstein , David W. Christianson
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Abstract

Copalyl diphosphate synthase from Penicillium fellutanum (PfCPS) is an assembly-line terpene synthase that contains both prenyltransferase and class II cyclase activities. The prenyltransferase catalyzes processive chain elongation reactions using dimethylallyl diphosphate and three equivalents of isopentenyl diphosphate to yield geranylgeranyl diphosphate, which is then utilized as a substrate by the class II cyclase domain to generate copalyl diphosphate. Here, we report the 2.81 Å-resolution cryo-EM structure of the hexameric prenyltransferase of full-length PfCPS, which is surrounded by randomly splayed-out class II cyclase domains connected by disordered polypeptide linkers. The hexamer can be described as a trimer of dimers; surprisingly, one of the three dimer-dimer interfaces is separated to yield an open hexamer conformation, thus breaking the D3 symmetry typically observed in crystal structures of other prenyltransferase hexamers such as wild-type human GGPP synthase (hGGPPS). Interestingly, however, an open hexamer conformation was previously observed in the crystal structure of D188Y hGGPPS, apparently facilitated by hexamer-hexamer packing in the crystal lattice. The cryo-EM structure of the PfCPS prenyltransferase hexamer is the first to reveal that an open conformation can be achieved even in the absence of a point mutation or interaction with another hexamer. Even though PfCPS octamers are not detected, we suggest that the open hexamer conformation represents an intermediate in the hexamer-octamer equilibrium for those prenyltransferases that do exhibit oligomeric heterogeneity.

Abstract Image

Abstract Image

落羽青霉双功能共醛酰二磷酸合酶中的前酰基转移酶结构揭示了开放的六聚体构象
来自落羽青霉的二磷酸铜酰合成酶(PfCPS)是一种流水线萜烯合成酶,含有前酰转移酶和 II 类环化酶活性。前酰基转移酶利用二磷酸二甲基烯丙基酯和三当量的二磷酸异戊烯酯催化链延伸反应,生成二磷酸香叶酯,然后由 II 类环化酶结构域用作底物,生成二磷酸 copalyl。在这里,我们报告了全长 PfCPS 的六聚体炔基转移酶的 2.81 Å 分辨率冷冻电镜结构。该六聚体可被描述为二聚体的三聚体;令人惊讶的是,三个二聚体界面中的一个被分开,产生了开放的六聚体构象,从而打破了在野生型人类 GGPP 合成酶(hGGPPS)等其他前酰转移酶六聚体晶体结构中通常观察到的 D3 对称性。但有趣的是,之前在 D188Y hGGPPS 晶体结构中观察到一种开放的六聚体构象,这显然是由晶格中的六聚体-六聚体堆积促成的。PfCPS 预炔基转移酶六聚体的低温电子显微镜结构首次揭示,即使没有点突变或与另一个六聚体相互作用,也能实现开放构象。尽管没有检测到 PfCPS 八聚体,但我们认为开放的六聚体构象代表了那些确实表现出寡聚异质性的前酰转移酶的六聚体-八聚体平衡中间体。
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来源期刊
Journal of structural biology
Journal of structural biology 生物-生化与分子生物学
CiteScore
6.30
自引率
3.30%
发文量
88
审稿时长
65 days
期刊介绍: Journal of Structural Biology (JSB) has an open access mirror journal, the Journal of Structural Biology: X (JSBX), sharing the same aims and scope, editorial team, submission system and rigorous peer review. Since both journals share the same editorial system, you may submit your manuscript via either journal homepage. You will be prompted during submission (and revision) to choose in which to publish your article. The editors and reviewers are not aware of the choice you made until the article has been published online. JSB and JSBX publish papers dealing with the structural analysis of living material at every level of organization by all methods that lead to an understanding of biological function in terms of molecular and supermolecular structure. Techniques covered include: • Light microscopy including confocal microscopy • All types of electron microscopy • X-ray diffraction • Nuclear magnetic resonance • Scanning force microscopy, scanning probe microscopy, and tunneling microscopy • Digital image processing • Computational insights into structure
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