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[求助]NMR检测小分子配体与蛋白相互作用

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发表于 2010-10-18 18:42:26 | 显示全部楼层 |阅读模式

刚接触NMR,想用来检测一下一种三个苯环的小分子配体与一种三万KDa的蛋白的相互作用,

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请教各位大侠,是做小分子的H谱呢?还是做大分子的H谱?

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做的话对于溶剂有什么要求吗?蛋白用什么溶剂呢?小分子用DMSO溶解可以吗?

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各位大侠帮帮忙,不胜感激啊

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发表于 2010-10-18 23:59:29 | 显示全部楼层
应该是用std 实验吧。
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 楼主| 发表于 2010-10-19 12:22:57 | 显示全部楼层
什么事STD实验啊?大侠能详细解释一下吗?小弟初次接触NMR
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发表于 2010-10-19 20:45:31 | 显示全部楼层
同问。蛋白的核磁咋做?
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发表于 2010-10-19 23:54:37 | 显示全部楼层
 

STD NMR

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STD NMR ( L. U+ h$ ?; A, w% {5 d experiments detect magnetization that is transferred from a receptor protein + k. \# ]# p1 R# T to a bound ligand. Only bound ligands show STD effects. The experiment may be }; l6 n p0 t+ j$ u combined with virtually any other NMR experiment, and therefore is well suitable / `* e! ?; t) v( f* P to tackle even very complex problems. In particular, in combination with multidimensional & B! H9 ~6 |" A9 N( k NMR a full characterization of a bound ligand out of a mixture is straightforward. $ x/ `, b7 l* S' c. G+ ? STD NMR is extremely robust and gives maximal effects at protein to ligand ratios : b' B1 L: F/ j) J greater than ca. 1:100. It follows that less than 1 nmol of protein is necessary # w7 p' [" Q) k; g0 W% s for screening. With the availability of so called cryo probes it will be possible ' G9 A; l# z' ?' Q& q0 ?4 J4 Z4 X0 Q to work with hundred pmol amounts of protein. The dissociation constant should 3 T0 s" j6 ^; g5 x; z be in the range between nM and mM. Therefore, STD NMR covers at least two orders - n7 U4 i+ H2 h of magnitudes more for dissociation constants than trNOE experiments. From competitive ( W' i- ^" U; q! k STD experiments dissociation constants may be derived.

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# r" Z- C/ C9 N a1 c% c" J. D Schematic ' n8 _/ o; ]5 K2 O4 Q display of the STD NMR effect. Saturation of the protein leads to a direct saturation + P" a7 [/ N4 Q, ~* E5 O6 v+ Q- ~ of those parts of ligand(s) in direct contact to the protein. By exchange between ) q5 i2 j9 T, o$ z a1 B' Y" s bound and free state the saturation is transported to solution and detected . V$ V* ^5 A9 x/ C8 e# d by subtracting a spectrum with saturation from a normal spectrum.
N7 q- a2 b1 x0 n# L STD NMR gives precise information about the binding epitope of the ligand. This 1 |( G; V+ ?& a/ `# v" {8 ~ is very important information for the design of a potent drug. The optimal drug 6 @# K) }9 M. z is of optimal size and optimal shape. The size is deduced from STD NMR, and @1 ~9 v3 p* n8 h the shape is delivered by trNOE experiments.

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