Kargatov Anton M
Instituteof Protein Research RAS, Institutskaya street, 4, Pushchino, Moscow region 142290, Russian Federation.
J Struct Biol. 2024 Mar;216(1):108063. doi: 10.1016/j.jsb.2024.108063. Epub 2024 Jan 19.
A novel helical N-capping motif has been considered. It occurs in the βα-arches of right-handed βαβ-units and contains an N-cap residue in a sterically strained conformation. Moreover, this amino acid position contains almost no glycines, that could relieve strain. It was shown that the N-cap adopts this conformation as a result of the unusual convergence between the second and third amino acid positions of the α-helix (counting from the N-cap) and the second position of the preceding β-strand. This is achieved by the presence of glycines in the specified positions (i.e. positions i - 2, i + 2 and i + 3, if N-cap is i). The N-cap conformation is stabilized by a hydrogen bond between the backbone amide group in the second position of the α-helix and the carbonyl group in the first position of the β-strand. The occurrence of similar N-capping motifs in different types of βαβ-units was compared and their structural differences caused by the influence of the environment were described. Study results may be useful for protein design and ab initio prediction of the 3D protein structure.
一种新型的螺旋N-封端基序已被考虑。它出现在右手βαβ单元的βα-拱中,并且包含处于空间应变构象的N-封端残基。此外,这个氨基酸位置几乎不含甘氨酸,而甘氨酸可以缓解应变。结果表明,由于α-螺旋(从N-封端开始计数)的第二个和第三个氨基酸位置与前一个β-链的第二个位置之间存在异常汇聚,N-封端采取了这种构象。这是通过在特定位置(即如果N-封端为i,则为位置i - 2、i + 2和i + 3)存在甘氨酸来实现的。N-封端构象通过α-螺旋第二个位置的主链酰胺基团与β-链第一个位置的羰基之间的氢键得以稳定。比较了不同类型βαβ单元中类似N-封端基序的出现情况,并描述了环境影响导致的它们的结构差异。研究结果可能对蛋白质设计和蛋白质三维结构的从头预测有用。