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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 ) w& B% U# P: E8 x, K# z$ { experiments detect magnetization that is transferred from a receptor protein ' M9 Q* b: y8 S: T to a bound ligand. Only bound ligands show STD effects. The experiment may be + G; D9 ?& o& @% x combined with virtually any other NMR experiment, and therefore is well suitable 6 R; Y" s! i' x9 O. A0 ? to tackle even very complex problems. In particular, in combination with multidimensional - x: X% I( D' {& Z NMR a full characterization of a bound ligand out of a mixture is straightforward. F6 `: _3 `4 N( ?( L" ?# d! ^) G STD NMR is extremely robust and gives maximal effects at protein to ligand ratios - J: M. o/ ~$ ] greater than ca. 1:100. It follows that less than 1 nmol of protein is necessary ) o% P) N3 j0 i for screening. With the availability of so called cryo probes it will be possible ! C4 Y0 k8 _4 x3 Y8 E' S5 _, f to work with hundred pmol amounts of protein. The dissociation constant should $ ~. G5 o( j$ P- I/ p* @) S: i- P be in the range between nM and mM. Therefore, STD NMR covers at least two orders 9 g, c5 ~# x7 A/ O ~ of magnitudes more for dissociation constants than trNOE experiments. From competitive & ~2 X/ p! a$ a9 ` p6 E5 [ STD experiments dissociation constants may be derived.

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y% z) l/ b- Y6 @ Schematic ( c2 s- k0 B3 @8 }2 x5 q display of the STD NMR effect. Saturation of the protein leads to a direct saturation 8 M+ l. C% v( Y* E! w( I% ~ of those parts of ligand(s) in direct contact to the protein. By exchange between " Z9 a8 o4 q* M% ^1 C* n bound and free state the saturation is transported to solution and detected % x# J! ? i6 ` | by subtracting a spectrum with saturation from a normal spectrum.
7 M+ Y W2 S4 ` STD NMR gives precise information about the binding epitope of the ligand. This & I# ~$ Q" r" T2 H1 q: T Z is very important information for the design of a potent drug. The optimal drug ! \# u- d- B/ @6 `" ^ is of optimal size and optimal shape. The size is deduced from STD NMR, and 0 Z6 G1 C) V7 x& p4 Z' U2 o, F0 j the shape is delivered by trNOE experiments.

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