Anthonsen H W, Baptista A, Drabløs F, Martel P, Petersen S B
MR-Center, SINTEF UNIMED, Trondheim, Norway.
J Biotechnol. 1994 Aug 31;36(3):185-220. doi: 10.1016/0168-1656(94)90152-x.
In the present review some scientific areas of key importance for protein engineering are discussed, such as problems involved in deducting protein sequence from DNA sequence (due to posttranscriptional editing, splicing and posttranslational modifications), modelling of protein structures by homology, NMR of large proteins (including probing the molecular surface with relaxation agents), simulation of protein structures by molecular dynamics and simulation of electrostatic effects in proteins (including pH-dependent effects). It is argued that all of these areas could be of key importance in most protein engineering projects, because they give access to increased and often unique information. In the last part of the review some potential areas for future applications of protein engineering approaches are discussed, such as non-conventional media, de novo design and nanotechnology.
在本综述中,讨论了对蛋白质工程至关重要的一些科学领域,例如从DNA序列推导蛋白质序列时涉及的问题(由于转录后编辑、剪接和翻译后修饰)、通过同源性对蛋白质结构进行建模、大蛋白质的核磁共振(包括用弛豫剂探测分子表面)、通过分子动力学模拟蛋白质结构以及模拟蛋白质中的静电效应(包括pH依赖性效应)。有人认为,所有这些领域在大多数蛋白质工程项目中可能都至关重要,因为它们能提供更多且往往是独特的信息。在综述的最后部分,讨论了蛋白质工程方法未来应用的一些潜在领域,例如非常规介质、从头设计和纳米技术。