Spector S, Young P, Raleigh D P
Department of Physiology and Biophysics, State University of New York at Stony Brook 11794-8661, USA.
Biochemistry. 1999 Mar 30;38(13):4128-36. doi: 10.1021/bi982915k.
Despite its small size, the peripheral subunit-binding domain from the dihydrolipoamide acetyltransferase component of the Bacillus stearothermophilus pyruvate dehydrogenase multienzyme complex adopts a unique, compact structure. To determine whether the full 43 residue sequence is required for the domain to adopt a stable, nativelike structure, 3 proteins of different lengths were prepared. Psbd41 corresponds to residues 3-43 of the domain, psbd36 spans residues 6-41, and psbd33 comprises residues 7-39. Psbd41 folds in a cooperative, two-state fashion with a Tm of 53 degrees C and a stability at 25 degrees C of 2.2 kcal mol-1. Psbd36 is nearly as stable with a Tm of 48 degrees C and a stability of 1.8 kcal mol-1. Similar m-values and heat capacities suggest that psbd36 and psbd41 bury approximately the same surface area. Minimal differences in CalphaH and NH chemical shifts between psbd41 and psbd36 show that the two sequences adopt the same tertiary fold. On a per residue basis, DeltaH degrees and DeltaC degrees p fall within the range typical for single-domain globular proteins. Psbd33 is significantly less stable. It is not fully folded at 25 degrees C, and at all temperatures it shows broadened NMR lines. ANS titrations provide evidence that this is due to an equilibrium between nativelike and unfolded molecules rather than formation of a molten globule. The fraction of psbd33 molecules which are folded appear to adopt the same structure as the full-length domain. Thus, although more than the 33 residue core is required to form a fully stable native structure, the entire sequence is not required for folding.
尽管嗜热脂肪芽孢杆菌丙酮酸脱氢酶多酶复合物的二氢硫辛酰胺乙酰转移酶组分的外周亚基结合结构域体积小,但它却具有独特而紧密的结构。为了确定该结构域采用稳定的、类似天然的结构是否需要完整的43个残基序列,制备了3种不同长度的蛋白质。Psbd41对应于该结构域的第3至43位残基,psbd36跨越第6至41位残基,psbd33包含第7至39位残基。Psbd41以协同的两态方式折叠,熔解温度为53℃,在25℃时的稳定性为2.2千卡/摩尔。Psbd36几乎同样稳定,熔解温度为48℃,稳定性为1.8千卡/摩尔。相似的m值和热容量表明psbd36和psbd41掩埋的表面积大致相同。psbd41和psbd36之间的CαH和NH化学位移差异极小,表明这两个序列采用相同的三级折叠。按每个残基计算,ΔH°和ΔC°p落在单结构域球状蛋白质的典型范围内。Psbd33的稳定性明显较低。它在25℃时未完全折叠,在所有温度下其核磁共振谱线都变宽。ANS滴定提供的证据表明,这是由于类似天然分子和未折叠分子之间的平衡,而不是形成了熔球态。折叠的psbd33分子部分似乎采用与全长结构域相同的结构。因此,虽然形成完全稳定的天然结构需要的残基核心超过33个,但折叠并不需要整个序列。