罕见的铁路蠕虫成虫(鞘翅目:Phengodidae)的橙色发光荧光素酶:与绿色和红色发光荧光素酶的结构/功能及进化关系。

IF 3.2 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Photochemical & Photobiological Sciences Pub Date : 2024-02-01 Epub Date: 2023-12-23 DOI:10.1007/s43630-023-00515-0
V R Viviani, G R Benites, D R Souza, G F Pelentir, Raone M Reis, Etelvino J H Bechara, Atilio Tomazini
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引用次数: 0

摘要

在甲虫中,铁路虫荧光素酶发出的生物发光颜色范围最广,从绿色到红色不等,是研究结构与生物发光颜色关系的模型酶。目前仅克隆并研究了三种幼虫期的活性铁路虫荧光素酶:Phrixothrix hirtus头灯红色发光荧光素酶(PhRE)、Phrixothrix vivianii侧灯绿色发光荧光素酶(PvGR)和Phengodes sp.背灯黄绿色发光荧光素酶(Ph)。然而,目前还没有克隆出在黄橙色区域发光的活性荧光素酶。在这里,我们报告了从一种罕见的巴西塞拉多铁路虫(Euryopa clarindae)的雄性成虫中克隆出的橙色发光荧光素酶及其特征,以及从亚马逊森林中的铁路虫(Mastinomorphus sp.)中转录鉴定出的两种同工酶。E. clarindae 的荧光素酶有 548 个残基,发出橙色生物荧光(600 纳米),其动力学值介于绿色发光侧灯荧光素酶和红色发光头灯荧光素酶的动力学值[KM(luciferin) = 50 µM,KM(ATP) ~ 170 µM]之间。它与其他铁路蠕虫的侧灯荧光素酶有 74-78% 的相似性,与头灯 PhRE 荧光素酶有 70% 的相似性,与幼虫 Mastinomorphus sp. Mast-1 有 96% 的相似性,这表明该幼虫可能属于 Euryopa 属。根据系统进化分析和动力学/功能特性,这种橙色发光酶是介于绿色发光侧灯荧光素酶和红色发光头灯荧光素酶之间的一种中间形式。可能与生物发光颜色决定有关的主要结构差异是空腔尺寸相对较大,223-235 和 311-316 环的取代,尤其是 N/C/T311,以及它们之间的相互作用,这可能有助于关闭 LBS 的底部。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The orange light emitting luciferase from the rare Euryopa clarindae adult railroadworm (Coleoptera:Phengodidae): structural/functional and evolutionary relationship with green and red emitting luciferases.

The orange light emitting luciferase from the rare Euryopa clarindae adult railroadworm (Coleoptera:Phengodidae): structural/functional and evolutionary relationship with green and red emitting luciferases.

Railroadworms luciferases emit the widest range of bioluminescence colors among beetles, ranging from green to red, being model enzymes to investigate the structure and bioluminescence colors relationships. Only three active railroadworms luciferases from the larval stage have been cloned and investigated: the Phrixothrix hirtus head lanterns red-emitting luciferase (PhRE); the Phrixothrix vivianii lateral lanterns green emitting luciferases (PvGR) and the Phengodes sp. dorsal lanterns yellow-green emitting luciferase (Ph). No active luciferase emitting in the yellow-orange region, however, has been cloned yet. Here we report the cloning and characterization of the orange emitting luciferase from the adult males of a rare Brazilian Cerrado railroadworm, Euryopa clarindae, and the transcriptional identification of two isozymes from the Amazon forest Mastinomorphus sp. railroadworm. The luciferase of E. clarindae has 548 residues, emits orange bioluminescence (600 nm), and displays intermediate kinetic values [KM(luciferin) = 50 µM, KM(ATP) ~ 170 µM] between those reported for green-emitting lateral lanterns and red emitting head lanterns luciferases. It displays 74-78% identity with the lateral lanterns luciferases of other railroadworms and 70% with the head lantern PhRE luciferase, and 96% with the larval Mastinomorphus sp. Mast-1, suggesting that this larva could be from the Euryopa genus. The phylogenetic analysis and kinetic/functional properties, place this orange-emitting enzyme as an intermediate form between the green-emitting lateral lanterns and red-emitting head lanterns luciferases. Major structural differences that could be associated with bioluminescence color determination are a relatively larger cavity size, and substitutions in the loops 223-235 and 311-316, especially N/C/T311, and their interactions which may help to close the bottom of LBS.

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来源期刊
Photochemical & Photobiological Sciences
Photochemical & Photobiological Sciences 生物-生化与分子生物学
CiteScore
5.60
自引率
6.50%
发文量
201
审稿时长
2.3 months
期刊介绍: A society-owned journal publishing high quality research on all aspects of photochemistry and photobiology.
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