首页> 外文期刊>Applied and Environmental Microbiology >Latex Clearing Protein (Lcp) of Streptomyces sp. Strain K30 Is a b-Type Cytochrome and Differs from Rubber Oxygenase A (RoxA) in Its Biophysical Properties
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Latex Clearing Protein (Lcp) of Streptomyces sp. Strain K30 Is a b-Type Cytochrome and Differs from Rubber Oxygenase A (RoxA) in Its Biophysical Properties

机译:链霉菌的乳胶清除蛋白(Lcp)。菌株K30是b型细胞色素,其生物物理特性与橡胶氧合酶A(RoxA)不同

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Specific polyisoprene-cleaving activities of 1.5 U/mg and 4.6 U/mg were determined for purified Strep-tagged latex clearing protein (Lcp) of Streptomyces sp. strain K30 at 23°C and 37°C, respectively. Metal analysis revealed the presence of approximately one atom of iron per Lcp molecule. Copper, which had been identified in Lcp1VH2 of Gordonia polyisoprenivorans previously, was below the detection limit in LcpK30. Heme was identified as a cofactor in purified LcpK30 by (i) detection of characteristic α-, β-, and γ (Soret)-bands at 562 nm, 532 nm, and 430 nm in the visible spectrum after chemical reduction, (ii) detection of an acetone-extractable porphyrin molecule, (iii) determination of a heme b-type-specific absorption maximum (556 nm) after chemical conversion of the heme group to a bipyridyl-heme complex, and (iv) detection of a b-heme-specific m/z value of 616.2 via mass spectrometry. Spectroscopic analysis showed that purified Lcp as isolated contains an oxidized heme-Fe3+ that is free of bound dioxygen. This is in contrast to the rubber oxygenase RoxA, a c-type heme-containing polyisoprene-cleaving enzyme present in Gram-negative rubber degraders, in which the covalently bound heme firmly binds a dioxygen molecule. LcpK30 also differed from RoxA in the lengths of the rubber degradation cleavage products and in having a higher melting point of 61.5°C (RoxA, 54.3°C). In summary, RoxA and Lcp both are equipped with a heme cofactor and catalyze an oxidative C-C cleavage reaction but differ in the heme subgroup type and in several biochemical and biophysical properties. These findings suggest differences in the catalytic reaction mechanisms.
机译:对于链霉菌属的纯化的带有Strep标签的乳胶清除蛋白(Lcp),确定了1.5 U / mg和4.6 U / mg的特定聚异戊二烯切割活性。分别在23°C和37°C下产生K30应变。金属分析显示每个Lcp分子大约存在一个铁原子。铜,以前在Gordonia polyisoprenivorans的Lcp1VH2中鉴定,低于LcpK30的检测限。通过(i)在化学还原后在可见光谱中检测562 nm,532 nm和430 nm处的特征性α-,β-和γ(Soret)谱带,血红素被鉴定为纯化LcpK30中的辅因子,(ii)检测丙酮可提取的卟啉分子;(iii)测定血红素基团化学转化为联吡啶-血红素复合物后血红素b型特异性吸收最大值(556 nm),以及(iv)检测b-通过质谱分析,血红素特异性m / z值为616.2。光谱分析表明,分离出的纯化的Lcp含有不含结合双氧的氧化血红素-Fe 3+。这与橡胶加氧酶RoxA(一种存在于革兰氏阴性橡胶降解物中的c型含血红素的聚异戊二烯裂解酶)形成鲜明对比,其中共价结合的血红素牢固地结合了一个双氧分子。 LcpK30在橡胶降解裂解产物的长度上也与RoxA不同,其熔点更高,为61.5°C(RoxA,54.3°C)。总之,RoxA和Lcp都配备了血红素辅因子并催化氧化C-C裂解反应,但在血红素亚组类型以及一些生化和生物物理特性上有所不同。这些发现表明催化反应机理的差异。

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