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Recombinant water-soluble chlorophyll protein from Brassica oleracea Var. botrys binds various chlorophyll derivatives

机译:甘蓝型油菜的重组水溶性叶绿素蛋白葡萄孢结合各种叶绿素衍生物

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A gene coding for water-soluble chlorophyll-binding protein (WSCP) from Brassica oleracea var. Botrys has been used to express the protein, extended by a hexahistidyl tag, in Escherichia coli. The protein has been refolded in vitro to study its pigment binding behavior. Recombinant WSCP was found to bind two chlorophylls (Chls) per tetrameric protein complex but no carotenoids in accordance with previous observations with the native protein [Satoh, H., Nakayama, K., Okada, M. (1998) J. Biol. Chem. 273, 30568-30575]. WSCP binds Chl a, Chl b, bacteriochlorophyll a, and the Zn derivative of Chl a but not pheophytin a, indicating that the central metal ion in Chl is essential for binding. WSCP also binds chlorophyllides a and b and even the more distant Chl precursor Mg-protoporphyrin IX; however, these pigments fail to induce oligomerization of the protein. We conclude that the phytol group in bound Chi plays a role in the formation of tetrameric WSCP complexes. If WSCP in fact binds Chi or its derivative(s) in vivo, the lack of carotenoids in pigmented WSCP raises the question of how photooxidation, mediated by triplet-excited Chl and singlet oxygen, is prohibited. We show by spin-trap electron-paramagnetic resonance that the light-induced singlet-oxygen formation of WSCP-bound Chi is lower by a factor of about 4 than that of unbound Chl. This as-yet-unknown mechanism of WSCP to protect its bound Chi against photooxidation supports the notion that WSCP may function as a transient carrier of Chi or its derivatives. [References: 32]
机译:甘蓝型油菜水溶性叶绿素结合蛋白(WSCP)的编码基因。 Botrys已被用于在大肠杆菌中表达通过六组氨酸标签延伸的蛋白质。该蛋白已在体外重折叠以研究其色素结合行为。根据先前的观察,发现重组WSCP结合每个四聚体蛋白复合物两个叶绿素(Chls),但不结合类胡萝卜素与天然蛋白结合[Satoh,H.,Nakayama,K.,Okada,M。(1998)J.Biol.Chem.Soc.Sci。,Vol.5,pp.3(1992)]。化学273,30568-30575]。 WSCP结合Chl a,Chl b,细菌叶绿素a和Chl a的Zn衍生物,但不结合脱镁叶绿素a,这表明Chl中的中央金属离子对于结合至关重要。 WSCP还与叶绿素a和b甚至更远的Chl前体Mg-原卟啉IX结合;然而,这些色素不能诱导蛋白质的低聚。我们得出的结论是,结合的Chi中的植醇基在四聚WSCP复合物的形成中起作用。如果WSCP实际上在体内结合了Chi或其衍生物,则有色WSCP中类胡萝卜素的缺乏会引发一个问题,即如何禁止由三重态激发的Chl和单线态氧介导的光氧化作用。我们通过自旋陷阱电子顺磁共振表明,WSCP结合的Chi的光诱导单线态氧形成比未结合的Chl降低了约4倍。 WSCP保护其结合的Chi不受光氧化的这种迄今未知的机制支持WSCP可能充当Chi或其衍生物的瞬时载体的观点。 [参考:32]

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