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feruloyl-CoA | 30802-02-9

中文名称
——
中文别名
——
英文名称
feruloyl-CoA
英文别名
feruloyl CoA;trans-Feruloyl-CoA;S-[2-[3-[[(2R)-4-[[[(2R,3S,4R,5R)-5-(6-aminopurin-9-yl)-4-hydroxy-3-phosphonooxyoxolan-2-yl]methoxy-hydroxyphosphoryl]oxy-hydroxyphosphoryl]oxy-2-hydroxy-3,3-dimethylbutanoyl]amino]propanoylamino]ethyl] (E)-3-(4-hydroxy-3-methoxyphenyl)prop-2-enethioate
feruloyl-CoA化学式
CAS
30802-02-9;142185-30-6
化学式
C31H44N7O19P3S
mdl
——
分子量
943.713
InChiKey
GBXZVJQQDAJGSO-NBXNMEGSSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

物化性质

  • 密度:
    1.78±0.1 g/cm3(Predicted)

计算性质

  • 辛醇/水分配系数(LogP):
    -3.9
  • 重原子数:
    61
  • 可旋转键数:
    23
  • 环数:
    4.0
  • sp3杂化的碳原子比例:
    0.48
  • 拓扑面积:
    418
  • 氢给体数:
    10
  • 氢受体数:
    24

上下游信息

  • 上游原料
    中文名称 英文名称 CAS号 化学式 分子量

反应信息

  • 作为反应物:
    描述:
    feruloyl-CoA 作用下, 反应 14.0h, 生成 香草醛
    参考文献:
    名称:
    辅酶A共轭的肉桂酸-CoA-酯库的酶促合成及其在香草醛衍生物的生物催化级联反应中的应用
    摘要:
    我们提出了一种用于肉桂酸的辅酶A(CoA)连接的生物正交方法。该反应是多种生物活性次生代谢产物生物合成的第一步,它被混杂的植物连接酶催化,产生具有不同功能的CoA缀合物,具有高纯度且不形成副产物。已表明其在生物合成级联反应中的适用性可将肉桂酸直接转化为天然苯甲醛(如香兰素)或人工衍生物(如乙基香兰素)。
    DOI:
    10.1002/adsc.201900892
  • 作为产物:
    描述:
    阿魏酸 在 fluoro-2 methyl-1 pyridinium 、 碳酸氢钠三乙胺 作用下, 以 二氯甲烷氯仿丙酮 为溶剂, 反应 22.0h, 生成 feruloyl-CoA
    参考文献:
    名称:
    Duran,Elisabeth; Duran, Hubert; Cazaux, Louis, Bulletin de la Societe Chimique de France, 1987, # 1, p. 143 - 148
    摘要:
    DOI:
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文献信息

  • p-Coumaroyl-CoA:Monolignol Transferase
    申请人:Sedbrook John
    公开号:US20160046955A1
    公开(公告)日:2016-02-18
    The invention relates to nucleic acids encoding a p-coumaroyl-CoA:monolignol transferase and to inhibitory nucleic acids adapted to inhibit the expression and/or translation of a p-coumaroyl-CoA:monolignol transferase RNA. Inhibition of p-coumaroyl-CoA:monolignol transferase in plants improves the incorporation of monolignol ferulates into the lignin of plants, giving rise to plant biomass that is more easily processed into useful products such as paper and biofuels.
    该发明涉及编码p-香豆酰辅酶A:单木质素转移酶的核酸,以及适用于抑制p-香豆酰辅酶A:单木质素转移酶RNA表达和/或翻译的抑制性核酸。在植物中抑制p-香豆酰辅酶A:单木质素转移酶可改善单木质素酰基的纤维素中的结合,使得植物生物质更容易加工成纸张和生物燃料等有用产品。
  • FERULOYL-CoA:MONOLIGNOL TRANSFERASE
    申请人:Wilkerson Curtis
    公开号:US20130203973A1
    公开(公告)日:2013-08-08
    The invention relates to nucleic acids encoding a feruloyl-CoA:monolignol transferase and the feruloyl-CoA:monolignol transferase enzyme that enables incorporation of monolignol ferulates, for example, including p-coumaryl ferulate, coniferyl ferulate, and sinapyl ferulate, into the lignin of plants.
    该发明涉及编码feruloyl-CoA: monolignol转移酶的核酸和feruloyl-CoA: monolignol转移酶酶,该酶使得单木素ferulates(例如p-香豆素ferulate、coniferyl ferulate和sinapyl ferulate)能够被结合到植物的木质素中。
  • Induction of<i>N</i>-Hydroxycinnamoyltyramine Synthesis and Tyramine<i>N</i>-Hydroxycinnamoyltransferase (THT) Activity by Wounding in Maize Leaves
    作者:Atsushi ISHIHARA、Naoki KAWATA、Tetsuya MATSUKAWA、Hajime IWAMURA
    DOI:10.1271/bbb.64.1025
    日期:2000.1
    Both N-p-coumaroyl- and N-feruloyltyramine accumulated in response to wounding in leaf segments of maize. The amount of N-hydroxycinnamoyltyramines started to increase 3-6 h after wounding and peaked at 12 h. Thereafter, the amount of N-p-coumaroyltyramine decreased rapidly, while the N-feruloyltyramine content remained at a high level. The accumulation of N-hydroxycinnamoyltyramines was accompanied by an increase in the tyramine N-hydroxycinnamoyltransferase (THT) activity. This increase was initially detected 3 h after wounding and reached a maximum at 36 h, the level of activity being 40 and 11 times that in the leaves before wounding and in the control leaves, respectively. Partial purification of THT from wounded leaves by (NH4)2SO4 precipitation and subsequent two steps of anion-exchange chromatography resulted in a 12.5-fold increase in specific activity. Kinetic studies with this partially purified enzyme revealed that the best substrates were tyramine and feruloyl-CoA, although tryptamine and sinapoyl-CoA also efficiently served as substrates. The apparent native molecular weight of the enzyme was determined by gel filtration as 40 kDa.
    玉米叶片受伤后,N-对香豆酰基和 N-阿魏酰基酪胺都会积累。受伤后 3-6 小时,N-羟基肉桂酰基酪胺的含量开始增加,12 小时达到峰值。此后,N-对香豆酰基酪胺的含量迅速下降,而 N-阿魏酰基酪胺的含量则保持在较高水平。伴随着 N-羟基肉桂酰基酪胺的积累,酪胺 N-羟基肉桂酰基转移酶(THT)的活性也在增加。这种增加最初是在受伤 3 小时后发现的,并在 36 小时后达到最大值,其活性水平分别是受伤前叶片和对照叶片的 40 倍和 11 倍。通过(NH4)2SO4 沉淀和随后的两步阴离子交换色谱法对受伤叶片中的 THT 进行部分纯化后,比活性提高了 12.5 倍。对这种部分纯化的酶进行的动力学研究表明,最佳底物是酪胺和阿魏酰-CoA,尽管色胺和山奈酰-CoA 也能有效地作为底物。经凝胶过滤测定,该酶的表观原生分子量为 40 kDa。
  • Characterization in vitro and in vivo of the putative multigene 4-coumarate:CoA ligase network in Arabidopsis: syringyl lignin and sinapate/sinapyl alcohol derivative formation
    作者:Michael A. Costa、Diana L. Bedgar、Syed G.A. Moinuddin、Kye-Won Kim、Claudia L. Cardenas、Fiona C. Cochrane、Jay M. Shockey、Gregory L. Helms、Yoshiaki Amakura、Hironobu Takahashi、Jessica K. Milhollan、Laurence B. Davin、John Browse、Norman G. Lewis
    DOI:10.1016/j.phytochem.2005.06.022
    日期:2005.9
    different stages of growth and development until maturation. The data so obtained revealed that this "knockout" had no significant effect on either lignin content or monomeric composition, or on the accumulation of sinapate/sinapyl alcohol derivatives. The results from the present study indicate that formation of syringyl lignins and sinapate/sinapyl alcohol derivatives result primarily from methylation
    最近的计算机分析显示,拟南芥基因组有 14 个基因被注释为推定的 4-香豆酸:CoA 连接酶亚型或同源物。其中,选择了 11 种进行详细的体外功能分析,使用所有已知的可能的苯丙烷途径中间体(对香豆酸、咖啡酸、阿魏酸、5-羟基阿魏酸和芥子酸)以及肉桂酸。在如此获得的 11 种重组蛋白中,有四种在体外具有催化活性,具有相当广泛的底物特异性,证实拟南芥中的 4CL 基因家族只有四个成员。这一发现与我们之前的系统发育分析一致,并再次说明需要对所有假定的 4CL 进行全面表征,而不是对选定的基因成员进行零碎分析。所有 11 种蛋白质都用 C 端 His6 标签表达并进行功能表征,其中一种是 At4CL1,以天然形式表达,用于比较动力学特性。在 11 个推定的带有 His6 标记的​​ 4CL 中,亚型 At4CL1 最好利用对香豆酸、咖啡酸、阿魏酸和 5-羟基阿魏酸作为底物,而 At4CL2 容易将对香豆酸和咖啡酸转化为相应的
  • GENETIC ENGINEERING OF PSEUDOMONAS PUTIDA KT2440 FOR RAPID AND HIGH YIELD PRODUCTION OF VANILLIN FROM FERULIC ACID
    申请人:BASF SE
    公开号:US20160168599A1
    公开(公告)日:2016-06-16
    The present invention relates to an improved biocatalytic process for producing vanillin from ferulic acid based on a genetically engineered Pseudomonas strains, as well as to said Pseudemonas strains.
    本发明涉及一种基于基因工程的假单胞菌菌株的改进生物催化过程,用于从香草酸中生产香草醛,同时也涉及到该假单胞菌菌株。
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