首页> 外文期刊>Biochemistry >Cloning, sequence analysis, and expression of active Phrixothrix railroad-worms luciferases: relationship between bioluminescence spectra and primary structures.
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Cloning, sequence analysis, and expression of active Phrixothrix railroad-worms luciferases: relationship between bioluminescence spectra and primary structures.

机译:活性Phrixothrix铁路蠕虫萤光素酶的克隆,序列分析和表达:生物发光光谱与一级结构之间的关系。

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Phrixothrix railroad-worms emit yellow-green light through 11 pairs of lateral lanterns along the body and red light through two cephalic lanterns. The cDNAs for the lateral lanterns luciferase of Phrixothrix vivianii, which emit green light (lambda max= 542 nm), and for the head lanterns of P. hirtus, which emit the most red-shifted bioluminescence (lambda max= 628 nm) among luminescent beetles, were cloned. Positive clones which emitted green (PvGR: lambda max= 549 nm) and red (PhRE: lambda max= 622 nm) bioluminescence were isolated. The lucifereases coded by PvGR (545 amino acid residues) and PhRE (546 amino acid residues) cDNAs share 71% identity. PvGR and PhRE luciferases showed 50-55% and 46-49% identity with firefly luciferases, respectively, and 47-49% with click-beetle luciferases. PhRE luciferase has some unique residues which replace invariant residues in other beetle luciferases. The additional residue Arg 352 in PhRE, which is deleted in PvGR polypeptide, seems to be another important structural feature associated with red light production. As in the case of other railroad-worms and click-beetle luciferases studied, Phrixothrix luciferases do not undergo the typical red shift suffered by firefly luciferases upon decreasing pH, a property which might be related to the many amino acid residues shared in common between railroad-worm and click-beetle luciferase.
机译:狮ri蠕虫通过沿身体的11对侧向灯笼发出黄绿色的光,并通过两个头向灯笼发出红色的光。在发光中发出绿色光(λmax = 542 nm)的Phrixothrix vivianii侧灯笼荧光素酶的cDNA和发出最大红移生物发光(λmax = 628 nm)的P. hirtus头灯笼的cDNA。甲虫,被克隆。分离出发出绿色(PvGR:最大λ= 549nm)和红色(PhRE:最大λ= 622nm)生物发光的阳性克隆。由PvGR(545个氨基酸残基)和PhRE(546个氨基酸残基)cDNA编码的荧光素具有71%的同一性。 PvGR和PhRE萤光素酶分别与萤火虫萤光素酶具有50-55%和46-49%的同一性,而单击甲虫萤光素酶具有47-49%的同一性。 PhRE萤光素酶具有一些独特的残基,可替代其他甲虫萤光素酶中的不变残基。 PhRE中的额外残基Arg 352(已在PvGR多肽中缺失)似乎是与红光产生相关的另一个重要结构特征。与研究的其他铁路蠕虫和click虫萤光素酶一样,Phrixothrix萤光素酶在pH降低时不会经历萤火虫萤光素酶的典型红移现象,这一特性可能与铁路之间共有的许多氨基酸残基有关蠕虫和单击甲虫萤光素酶。

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