Suppr超能文献

胶原蛋白三螺旋中的立体电子效应和空间效应:迈向链缔合的编码

Stereoelectronic and steric effects in the collagen triple helix: toward a code for strand association.

作者信息

Hodges Jonathan A, Raines Ronald T

机构信息

Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

J Am Chem Soc. 2005 Nov 16;127(45):15923-32. doi: 10.1021/ja054674r.

Abstract

Collagen is the most abundant protein in animals. The protein consists of a helix of three strands, each with sequence X-Y-Gly. Natural collagen is most stable when X is (2S)-proline (Pro) and Y is (2S,4R)-4-hydroxyproline (4R-Hyp). We had shown previously that triple helices in which X is (2S,4S)-4-fluoroproline (4S-Flp) or Y is (2S,4R)-4-fluoroproline (4R-Flp) display hyperstability. This hyperstability arises from stereoelectronic effects that preorganize the main-chain dihedral angles in the conformation found in the triple helix. Here, we report the synthesis of strands containing both 4S-Flp in the X-position and 4R-Flp in the Y-position. We find that these strands do not form a stable triple helix, presumably because of an unfavorable steric interaction between fluoro groups on adjacent strands. Density functional theory calculations indicate that (2S,3S)-3-fluoroproline (3S-Flp), like 4S-Flp, should preorganize the main chain properly for triple-helix formation but without a steric conflict. Synthetic strands containing 3S-Flp in the X-position and 4R-Flp in the Y-position do form a triple helix. This helix is, however, less stable than one with Pro in the X-position, presumably because of an unfavorable inductive effect that diminishes the strength of the interstrand 3S-FlpC=O...H-NGly hydrogen bond. Thus, other forces can counter the benefits derived from the proper preorganization. Although (Pro-Pro-Gly)7 and (4S-Flp-4R-Flp-Gly)7 do not form stable homotrimeric helices, mixtures of these two peptides form stable heterotrimeric helices containing one (Pro-Pro-Gly)7 strand and two (4S-Flp-4R-Flp-Gly)7 strands. This stoichiometry can be understood by considering the cross sections of the two possible heterotrimeric helices. This unexpected finding portends the development of a "code" for the self-assembly of determinate triple helices from two or three strands.

摘要

胶原蛋白是动物体内最丰富的蛋白质。该蛋白质由三条链组成的螺旋结构构成,每条链的序列为X-Y-甘氨酸。当X为(2S)-脯氨酸(Pro)且Y为(2S,4R)-4-羟脯氨酸(4R-Hyp)时,天然胶原蛋白最为稳定。我们之前已经表明,其中X为(2S,4S)-4-氟脯氨酸(4S-Flp)或Y为(2S,4R)-4-氟脯氨酸(4R-Flp)的三股螺旋表现出超稳定性。这种超稳定性源于立体电子效应,该效应在三股螺旋中发现的构象中预先排列主链二面角。在此,我们报告了在X位置含有4S-Flp且在Y位置含有4R-Flp的链的合成。我们发现这些链不会形成稳定的三股螺旋,推测这是由于相邻链上氟基团之间不利的空间相互作用。密度泛函理论计算表明,(2S,3S)-3-氟脯氨酸(3S-Flp)与4S-Flp一样,应该能正确地预先排列主链以形成三股螺旋,但不会产生空间冲突。在X位置含有3S-Flp且在Y位置含有4R-Flp的合成链确实会形成三股螺旋。然而,该螺旋的稳定性低于X位置为Pro的螺旋,推测这是由于一种不利的诱导效应削弱了链间3S-FlpC=O...H-NGly氢键的强度。因此,其他作用力可以抵消适当预先排列带来的益处。尽管(Pro-Pro-Gly)7和(4S-Flp-4R-Flp-Gly)7不会形成稳定的同三聚体螺旋,但这两种肽的混合物会形成稳定的异三聚体螺旋,其中包含一条(Pro-Pro-Gly)7链和两条(4S-Flp-4R-Flp-Gly)7链。通过考虑两种可能的异三聚体螺旋的横截面可以理解这种化学计量关系。这一意外发现预示着一种由两条或三条链自组装确定三股螺旋的“密码”的发展。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验