Liwo A, Ołdziej S, Ciarkowski J, Kupryszewski G, Pincus M R, Wawak R J, Rackovsky S, Scheraga H A
Department of Chemistry, University of Gdańsk, Poland.
J Protein Chem. 1994 May;13(4):375-80. doi: 10.1007/BF01901693.
The conformation of the 29-residue rat galanin neuropeptide was studied using the Monte Carlo with energy minimization (MCM) and electrostatically driven Monte Carlo (EDMC) methods. According to a previously elaborated procedure, the polypeptide chain was first treated in a united-residue approximation, in order to enable extensive exploration of the conformational space to be carried out (with the use of MCM). Then the low-energy united-residue conformations were converted to the all-atom representations, and EDMC simulations were carried out for the all-atom polypeptide chains, using the ECEPP/3 force field with hydration included. In order to estimate the effect of environment on galanin conformation, the low-energy conformations obtained as a result of these simulations were taken as starting structures for further EDMC runs that did not include hydration. The lowest-energy conformation obtained in aqueous solution calculations had a nonhelical N-terminal part packed against the nonpolar face of a residual helix that extended from Pro13 toward the C-terminus. One next lowest-energy structure was a nearly-all-helical conformation, but with a markedly higher energy. In contrast, all of the low-energy conformations in the absence of water were all-helical differing only by the extent to which the helix was kinked around Pro13. These results are in qualitative agreement with the available NMR and CD data of galanin in aqueous and nonaqueous solvents.
使用带能量最小化的蒙特卡罗方法(MCM)和静电驱动蒙特卡罗方法(EDMC)研究了29个残基的大鼠甘丙肽神经肽的构象。根据先前制定的程序,首先以统一残基近似法处理多肽链,以便能够广泛探索构象空间(使用MCM)。然后将低能量统一残基构象转换为全原子表示形式,并使用包含水合作用的ECEPP/3力场对全原子多肽链进行EDMC模拟。为了评估环境对甘丙肽构象的影响,将这些模拟结果获得的低能量构象作为进一步不包含水合作用的EDMC运行的起始结构。在水溶液计算中获得的最低能量构象具有非螺旋的N末端部分,该部分堆积在从Pro13延伸至C末端的残余螺旋的非极性面上。下一个能量次低的结构是几乎全螺旋的构象,但能量明显更高。相比之下,无水条件下的所有低能量构象都是全螺旋的,只是螺旋在Pro13周围的扭结程度有所不同。这些结果与甘丙肽在水性和非水性溶剂中的现有NMR和CD数据在定性上一致。