密码和立体特异性化,氧化和降解在平胺和平胺生物合成中
Journal of the American Chemical Society
|February 9, 2019
概括
这项研究揭示了C7α-基化中的三种酶级联. 这些酶提供了细菌二基B环修饰的洞察力,并提供了生物催化剂的潜力.
科学领域:
- 生物化学
- 自然产品生物合成
- 酵素学
背景情况:
- 平坦西米 (PTM) 和平坦 (PTN) 是由甲醇和乙产生的复杂结构的细菌二烯.
- 在B环中C7氧化对于这些二烯的结构多样性至关重要,但其生物合成起源尚未完全理解.
- 之前的研究表明,PTM和PTN生物合成涉及神秘的C7氧化.
研究的目的:
- 阐明在PTM和PTN生物合成中负责C7α-化的酶级联.
- 识别和描述参与生成C7氧化模式的酶.
- 了解各种生物体中二基B环修饰的更广泛影响.
主要方法:
- 在体外酶测试.
- 在体内研究.
- 对α-酸依赖的二氧化酶和NAD+/NADPH依赖的脱酶的表征.
主要成果:
- 在C7α- 基化过程中发现了三种酶级联.
- 发现PtmO3和PtmO6是多余的C7β-基酶.
- 通过中间体将β-基转化为α-基的PtmO8和PtmO1被确定为脱酶.
结论:
- PtmO3,PtmO6,PtmO8和PtmO1解释了PTM和PTN生物合成中的所有三种C7氧化模式的起源.
- 这些酶代表了第一个特征C7β-基酶.
- 这些已识别的酶扩大了复杂双合成中的生物催化剂工具包.
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