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钙离子-锰离子-小扁豆凝集素和钙离子-锰离子-豌豆凝集素的质子和氘核磁共振弛豫色散研究:与伴刀豆球蛋白A存在共同溶剂交换位点的证据

Proton and deuteron nuclear magnetic relaxation dispersion studies of Ca2+-Mn2+-lentil lectin and Ca2+-Mn2+-pea lectin: evidence for a site of solvent exchange in common with concanavalin A.

作者信息

Bhattacharyya L, Brewer C F, Brown R D, Koenig S H

出版信息

Biochemistry. 1985 Sep 10;24(19):4985-90. doi: 10.1021/bi00340a004.

Abstract

Measurements of the magnetic field dependence of the longitudinal magnetic relaxation rates (NMRD profiles) of solvent protons and deuterons led to the discovery of two classes of solvent binding sites in Ca2+-Mn2+-concanavalin A (CMPL) [Koenig, S. H., Brown, R. D., III, & Brewer, C. F. (1985) Biochemistry (second of three papers in this issue)]. In this paper, we compare proton and deuteron NMRD profiles of Ca2+-Mn2+-lentil lectin (CMLcH) and Ca2+-Mn2+-pea lectin (CMPSA) with those of CMPL. All three metalloproteins are D-mannose/D-glucose-specific lectins that have a high degree of structural similarity and require the metal ions for their biological activities. We have developed a method for the preparation of fully active metal ion derivatives of lentil lectin (LcH) and pea lectin (PSA), including the diamagnetic derivatives Ca2+-Zn2+-LcH and Ca2+-Zn2+-PSA [Bhattacharyya, L., Brewer, C. F., Brown, R. D., III, & Koenig, S. H.(1984) Biochem. Biophys. Res. Commun. 124, 857-862]. The behavior of these two lectins with regard to their NMRD profiles is essentially identical, for both the paramagnetic and diamagnetic forms. Together with CMPL, all three lectins have a common paramagnetic contribution with a negative temperature dependence of the rates, while CMPL contributes an additional component with a positive temperature dependence. The common contribution derives from the class of fast exchanging water molecules observed in the proton NMRD profile of CMPL (Koenig et al., 1985); their protons are calculated to be relatively remote from the Mn2+ ions (4.4 A for CMPL and 5.5 A for LcH and PSA).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对溶剂质子和氘核的纵向磁弛豫率的磁场依赖性进行测量(核磁共振弛豫分散谱,NMRD谱),促成了在Ca2+-Mn2+-伴刀豆球蛋白A(CMPL)中发现两类溶剂结合位点[凯尼格,S.H.,布朗,R.D.三世,&布鲁尔,C.F.(1985年)《生物化学》(本期三篇论文中的第二篇)]。在本文中,我们将Ca2+-Mn2+-小扁豆凝集素(CMLcH)和Ca2+-Mn2+-豌豆凝集素(CMPSA)的质子和氘核NMRD谱与CMPL的进行比较。这三种金属蛋白都是D-甘露糖/D-葡萄糖特异性凝集素,具有高度的结构相似性,且其生物活性需要金属离子。我们已开发出一种制备小扁豆凝集素(LcH)和豌豆凝集素(PSA)的完全活性金属离子衍生物的方法,包括抗磁性衍生物Ca2+-Zn2+-LcH和Ca2+-Zn2+-PSA[巴塔查里亚,L.,布鲁尔,C.F.,布朗,R.D.三世,&凯尼格,S.H.(1984年)《生物化学与生物物理研究通讯》124,857 - 862]。这两种凝集素在NMRD谱方面的行为,无论是顺磁性形式还是抗磁性形式,基本相同。与CMPL一起,这三种凝集素都有一个共同的顺磁贡献,其速率具有负温度依赖性,而CMPL还贡献了一个具有正温度依赖性的额外成分。这种共同贡献源自CMPL质子NMRD谱中观察到的快速交换水分子类别(凯尼格等人,1985年);据计算,它们的质子与Mn2+离子相对较远(CMPL为4.4埃,LcH和PSA为5.5埃)。(摘要截短于250字)

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