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EIAV弱毒疫苗株和强毒株诱导的特异性体液免疫应答差别 被引量:2
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作者 朱振营 林跃智 +3 位作者 王宇宏 赵立平 朱远茂 周建华 《细胞与分子免疫学杂志》 CAS CSCD 北大核心 2009年第12期1079-1083,共5页
目的:通过研究EIAV弱毒疫苗株和强毒株在诱导多种特异性抗体方面的差异,初步探讨特异性体液免疫应答在EIAV弱毒疫苗株保护性免疫中的作用。方法:试验马匹根据接种毒株分为疫苗组和强毒隐性感染组,应用ELISA方法对血清中病毒囊膜蛋白Env... 目的:通过研究EIAV弱毒疫苗株和强毒株在诱导多种特异性抗体方面的差异,初步探讨特异性体液免疫应答在EIAV弱毒疫苗株保护性免疫中的作用。方法:试验马匹根据接种毒株分为疫苗组和强毒隐性感染组,应用ELISA方法对血清中病毒囊膜蛋白Env和衣壳蛋白P26结合抗体的滴度、亲和力及Env结合抗体的构象依赖性进行动态实相检测,同时采用细胞蚀斑染色和逆转录酶活性检测方法对中和抗体水平进行同期检测。结果:Env和P26结合抗体的滴度、亲和力、构象依赖性及中和抗体的中和活性均存在一个缓慢上升的过程。对于P26抗体滴度及Env抗体亲和力,疫苗组和强毒隐性感染组仅在病毒接种2个月内,表现为统计学差异(P<0.05)。疫苗组从接种后14d开始,Env抗体的构象依赖性高于强毒隐性感染组(P<0.05),并持续至最后一个监测点。最明显的是,疫苗组诱导产生具有中和强毒特性毒株(EIAVDLV34)和弱毒特性毒株(EIAVFDDV)活性的中和抗体均高于强毒隐性感染组(P<0.05)。结论:弱毒疫苗株和强毒株诱导机体产生结合抗体和中和抗体的时间、水平和性质均存在明显差异,其中中和抗体和构象依赖性抗体的差异,可能是EIAV弱毒疫苗诱导保护性免疫的主要因素之一。 展开更多
关键词 马传染性贫血病毒 弱毒疫苗株 抗体亲和力 构象依赖性 中和抗体
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Quantum theory on protein folding 被引量:4
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作者 LUO LiaoFu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第3期458-468,共11页
The conformational change of biological macromolecule is investigated from the point of quantum transition.A quantum theory on protein folding is proposed.Compared with other dynamical variables such as mobile electro... The conformational change of biological macromolecule is investigated from the point of quantum transition.A quantum theory on protein folding is proposed.Compared with other dynamical variables such as mobile electrons,chemical bonds and stretching-bending vibrations the molecular torsion has the lowest energy and can be looked as the slow variable of the system.Simultaneously,from the multi-minima property of torsion potential the local conformational states are well defined.Following the idea that the slow variables slave the fast ones and using the nonadiabaticity operator method we deduce the Hamiltonian describing conformational change.It is shown that the influence of fast variables on the macromolecule can fully be taken into account through a phase transformation of slow variable wave function.Starting from the conformation-transition Hamiltonian the nonradiative matrix element was calculated and a general formulas for protein folding rate was deduced.The analytical form of the formula was utilized to study the temperature dependence of protein folding rate and the curious non-Arrhenius temperature relation was interpreted.By using temperature dependence data the multi-torsion correlation was studied.The decoherence time of quantum torsion state is estimated.The proposed folding rate formula gives a unifying approach for the study of a large class problems of biological conformational change. 展开更多
关键词 conformational change of macromolecule quantum transition torsion potential slow variable nonadiabaticity opera-tor Berry's phase quantum decoherence time protein folding
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