大豆吗啡分子的结构组织

N. Akhmedov, L. Agayeva, L. Ismailova
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引用次数: 0

摘要

通过理论构象分析方法,研究了大豆吗啡-5(Thr1-Pro2-Phe3-Val4-Val5-NH2)、大豆吗啡-6(Tyr1-Pro2-Phe3-Val4-Val5-Asn6-NH2)和大豆吗啡-7(Tyr1- Pro2-Tyr3-Val4-Val5-Asn6-Ala7-NH2)分子的构象能力。系统的势函数被选择为非价、静电和扭转相互作用以及氢键能量的总和。结果发现了大豆吗啡-5、大豆吗啡-6 和大豆吗啡-7 分子的低能构象,找到了组成分子的氨基酸残基主链和侧链的二面角,并估算了残基内和残基间相互作用的能量。因此,豆吗啡-5、豆吗啡-6 和豆吗啡-7 分子的空间结构可以用八种结构类型来表示。可以推测,这些分子在这些结构中发挥其生理功能。对豆蔻吗啡的低能结构进行比较后发现,豆蔻吗啡-5 的前四种低能构象是结构类型 efef、efee、efff、effe 的代表,豆蔻吗啡-6 的前四种低能构象是结构类型 effff、efeff、efffe、effee 的代表,豆蔻吗啡-6 和豆蔻吗啡-7 的前四种低能构象是结构类型 efffff、efeffe、efffef、effeee 的代表。根据这些结构,可以提出人工合成的类似物。研究结果表明,山豆根碱-5、山豆根碱-6 和山豆根碱-7 分子的空间结构由肽骨架的八种形状的构象来表示。所获得的结果可用于阐明黄豆吗啡分子的结构和结构功能组织。
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STRUCTURAL ORGANIZATION OF SOYMORPHIN MOLECULES
The conformational capabilities of soymorphine-5 (Thr1-Pro2-Phe3-Val4-Val5-NH2), soymorphine-6 (Tyr1-Pro2-Phe3-Val4-Val5-Asn6-NH2) and soymorphine-7 (Tyr1- Pro2-Tyr3-Val4-Val5-Asn6-Ala7-NH2) molecules have been studied by the method of theoretical conformational analysis. The potential function of the system is chosen as the sum of non-valence, electrostatic and torsion interactions and the energy of hydrogen bonds. The low-energy conformations of soymorphine-5, soymorphine-6 and soymorphine-7 molecules were found, the dihedral angles of the main and side chains of amino acid residues that make up the molecule were found, and the energy of intra- and interresidual interactions was estimated. Thus, the spatial structure of soymorphine-5, soymorphine-6 and soymorphine-7 molecules can be represented by eight structural types. It can be assumed that the molecules perform their physiological functions in these structures. Comparison of the low-energy structures of soymorphins shows that in all molecules the first four low-energy conformations are representatives of the structural types efef, efee, efff, effe for soymorphine-5, effff, efeff, efffe, effee for soymorphine-6, efffff, efeffe, efffef, effeee for soymorphine-6. soymorphine-7. On the basis of these structures, it is possible to propose their artificial analogues for synthesis. It was shown that the spatial structure of soymorphine-5, soymorphine-6 and soymorphine-7 molecules is represented by the conformations of eight shapes of the peptide skeleton. The results obtained can be used to elucidate the structural and structural-functional organization of soymorphine molecules.
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