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21.
从尖山橙(Melodinus fusiformis)全植物中分得15个生物碱,其中3个为新生物碱,采用波谱分析和化学方法,它们的结构分别鉴定为:11,19(R)-dihydroxy tabersonine(1)11-hydroxy-14,15α-epoxy tabersonine(2)和scandine N_b-oxide(3).其余12个为已知生物碱:scandine(4),moloscandonine(5),10-hydoxyscandine(6),Kopsinine(7),15α-hydroxykopsinine(8),venalstonine(9),tabersonine(10),11-methoxytabersonine(11),11-hydroxytabersonine(12),tubotaiwine(13),vindolinine(14)和deacetylpicraline(15).新生物碱1和2分别显示有明显的抗生育和抗肿瘤的作用。  相似文献   
22.
Myoglobin has important biological functions in storing and transporting small diatomic molecules in human body. Two possible orientations of carbon monoxide (CO) in the heme distal pocket (named as B1 and B2 states) of myoglobin have been experimentally indicated. In this study, ab initio quantum mechanics/molecular mechanics (QM/MM) molecular dynamics simulation of CO in myoglobin was carried out to investigate the two possible B states. Our results demonstrate that the B1 and B2 states correspond to Fe…CO (with carbon atom closer to iron center of heme) and Fe…OC (with oxygen atom closer to Fe), by comparing with the experimental infrared spectrum. QM electrostatic polarization effect on CO brought from the protein and solvent environment is the main driving force, which anchors CO in two distinctive orientations and hinders its rotation. The calculated vibrational frequency shift between the state B1 and B2 is 13.1 cm-1, which is in good agreement with experimental value of 11.5 cm-1. This study also shows that the electric field produced by the solvent plays an important role in assisting protein functions by exerting directional electric field at the active site of the protein. From residue-based electric field decomposition, several residues were found to have most contributions to the total electric field at the CO center, including a few charged residues and three adjacent uncharged polar residues (namely, HIS64, ILE107, and PHE43). This study provides new physical insights on rational design of enzyme with higher electric field at the active site.  相似文献   
23.
何晓 《应用声学》2011,30(6):447-447
"隐声斗篷"是一种新型的隔音材料,它能使入射声波沿斗篷表面无反射地绕行,从而对斗篷保护下的物体产生"隐声"效果。美国杜克大学的Steven Cummer博士等人在研究中发现光学隐身的数学原理同样适用于声波,从而提出了隐声斗篷  相似文献   
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