Janecek S
Institute of Ecobiology, Slovak Academy of Sciences, Bratislava, Slovakia.
Protein Sci. 1996 Jun;5(6):1136-43. doi: 10.1002/pro.5560050615.
The question of parallel (alpha/beta)8-barrel fold evolution remains unclear, owing mainly to the lack of sequence homology throughout the amino acid sequences of (alpha/beta)8-barrel enzymes. The "classical" approaches used in the search for homologies among (alpha/beta)8-barrels (e.g., production of structurally based alignments) have yielded alignments perfect from the structural point of view, but the approaches have been unable to reveal the homologies. These are proposed to be "hidden" in (alpha/beta)8-barrel enzymes. The term "hidden homology" means that the alignment of sequence stretches proposed to be homologous need not be structurally fully satisfactory. This is due to the very long evolutionary history of all (alpha/beta)8-barrels. This work identifies so-called hidden homology around the strand beta 2 that is flanked by loops containing invariant glycines and prolines in 17 different (alpha/beta)8-barrel enzymes, i.e., roughly in half of all currently known (alpha/beta)8-barrel proteins. The search was based on the idea that a conserved sequence region of an (alpha/beta)8-barrel enzyme should be more or less conserved also in the equivalent part of the structure of the other enzymes with this folding motif, given their mutual evolutionary relatedness. For this purpose, the sequence region around the well-conserved second beta-strand of alpha-amylase flanked by the invariant glycine and proline (56_GFTAIWITP, Aspergillus oryzae alpha-amylase numbering), was used as the sequence-structural template. The proposal that the second beta-strand of (alpha/beta)8-barrel fold is important from the evolutionary point of view is strongly supported by the increasing trend of the observed beta 2-strand structural similarity for the pairs of (alpha/beta)8-barrel enzymes: alpha-amylase and the alpha-subunit of tryptophan synthase, alpha-amylase and mandelate racemase, and alpha-amylase and cyclodextrin glycosyltransferase. This trend is also in agreement with the existing evolutionary division of the entire family of (alpha/beta)8-barrel proteins.
(α/β)8桶状折叠的进化问题仍不明确,主要原因是在(α/β)8桶状酶的整个氨基酸序列中缺乏序列同源性。在寻找(α/β)8桶状结构之间的同源性时所使用的“经典”方法(例如,基于结构的比对)从结构角度来看产生了完美的比对,但这些方法无法揭示同源性。这些同源性被认为“隐藏”在(α/β)8桶状酶中。“隐藏同源性”一词意味着被认为同源的序列片段的比对在结构上不一定完全令人满意。这是由于所有(α/β)8桶状结构都有着非常漫长的进化历史。这项工作在17种不同的(α/β)8桶状酶中,即在目前已知的所有(α/β)8桶状蛋白的大约一半中,确定了在β链2周围存在的所谓隐藏同源性,该β链2两侧是含有不变甘氨酸和脯氨酸的环。搜索基于这样一种想法,即鉴于(α/β)8桶状酶之间的相互进化关系,(α/β)8桶状酶的一个保守序列区域在具有这种折叠基序的其他酶的结构的等效部分中也应该或多或少是保守的。为此,以α-淀粉酶保守的第二条β链周围的序列区域为序列-结构模板,该区域两侧是不变甘氨酸和脯氨酸(56_GFTAIWITP,米曲霉α-淀粉酶编号)。(α/β)8桶状折叠的第二条β链从进化角度来看很重要这一观点,得到了(α/β)8桶状酶对(α-淀粉酶与色氨酸合酶的α亚基、α-淀粉酶与扁桃酸消旋酶、α-淀粉酶与环糊精糖基转移酶)中观察到的β链2结构相似性增加趋势的有力支持。这种趋势也与整个(α/β)8桶状蛋白家族现有的进化划分一致。