Description of Helix-Coil Transition in Heteropolymers in Frame of GMPC

IF 0.5 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
A. V. Asatryan, A. K. Kalashyan, V. F. Morozov
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引用次数: 0

Abstract

The work is devoted to the study of the behavior of heterogeneous biopolymers during the melting of the secondary structure. A random bimodal biopolymer is generated. Each component corresponds to its transfer matrix of GMPC, by multiplying these transfer matrices the free energy of the system is calculated. It is shown that for a length of 5000 repeating units, the reduced free energy does not depend on the realization of the system (primary structure). The corresponding denaturation curves show that the transition point is well defined as a linear combination of the corresponding homopolymers, but the profile of the curves depends on the implementation. The behavior of the number of junctions between the helical and coiled states is calculated. An unexpected result is obtained that the racemic heteropolymer with a length of 5000 repeated units is divided into about 10 sections during the melting process. We associate this with the behavior of correlation in the system, which will be investigated further.

GMPC框架内杂聚物螺旋-线圈过渡的描述
本工作致力于研究非均相生物聚合物在二级结构熔化过程中的行为。生成了一种随机的双峰生物聚合物。每个组分对应于GMPC的传递矩阵,通过这些传递矩阵相乘计算系统的自由能。结果表明,在长度为5000个重复单元时,自由能的还原值与体系(主结构)的实现无关。相应的变性曲线表明,过渡点可以很好地定义为相应均聚物的线性组合,但曲线的轮廓取决于实现。计算了螺旋态和螺旋态之间结数的变化规律。得到了一个意想不到的结果,即长度为5000个重复单元的外消旋异质聚合物在熔融过程中被分成了大约10个部分。我们将此与系统中的相关行为联系起来,这将进一步研究。
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来源期刊
CiteScore
1.00
自引率
66.70%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Journal of Contemporary Physics (Armenian Academy of Sciences) is a journal that covers all fields of modern physics. It publishes significant contributions in such areas of theoretical and applied science as interaction of elementary particles at superhigh energies, elementary particle physics, charged particle interactions with matter, physics of semiconductors and semiconductor devices, physics of condensed matter, radiophysics and radioelectronics, optics and quantum electronics, quantum size effects, nanophysics, sensorics, and superconductivity.
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