Sørensen M D, Meissner A, Sørensen O W
Department of Chemistry, Carlsberg Laboratory, Gamle Carlsberg Vej 10, Valby, DK-2500, Denmark.
J Magn Reson. 1999 Mar;137(1):237-42. doi: 10.1006/jmre.1998.1635.
It is demonstrated that the spin-state-selective pulse sequence elements, S3E and S3CT, previously introduced for measurement of J coupling constants in 15N-labeled proteins can be applied for work with peptides and proteins with 13C at the natural abundance level. In addition, a method is described for suppression of crosstalk caused by passive spin flips and pulse imperfections, which otherwise results in systematically underestimated J coupling constants and thereby inaccurate structural constraints. This method is also applicable for crosstalk suppression in applications of S3E and S3CT to 13C- or 15N-labeled samples. Experimental confirmation is obtained using a 10 mM BPTI sample focusing on 13C in the alpha position. The measured J coupling constants include 3J(HN-Halpha) and 3J(Halpha-Hbeta) related to the phi and chi1 angles, respectively.
结果表明,先前引入的用于测量15N标记蛋白质中J耦合常数的自旋态选择性脉冲序列元件S3E和S3CT,可用于天然丰度水平下含13C的肽和蛋白质的研究。此外,本文还描述了一种抑制由被动自旋翻转和脉冲缺陷引起的串扰的方法,否则会导致J耦合常数被系统低估,从而产生不准确的结构限制。该方法也适用于S3E和S3CT应用于13C或15N标记样品时的串扰抑制。使用聚焦于α位13C的10 mM BPTI样品获得了实验证实。测量的J耦合常数分别包括与φ和χ1角相关的3J(HN-Hα)和3J(Hα-Hβ)。