Department of Chemistry & Biochemistry, University of Montana, Missoula, MT 59812, United States.
Department of Chemistry & Biochemistry, University of Montana, Missoula, MT 59812, United States; Division of Biological Sciences, University of Montana, Missoula, MT 59812, United States; Center for Biomolecular Structure & Dynamics, University of Montana, Missoula, MT 59812, United States.
J Inorg Biochem. 2024 Mar;252:112474. doi: 10.1016/j.jinorgbio.2023.112474. Epub 2023 Dec 28.
To study how proline residues affect the dynamics of Ω-loop D (residues 70 to 85) of cytochrome c, we prepared G83P and G83A variants of yeast iso-1-cytochrome c (iso-1-Cytc) in the presence and absence of a K73H mutation. Ω-loop D is important in controlling both the electron transfer function of Cytc and the peroxidase activity of Cytc used in apoptosis because it provides the Met80 heme ligand. The G83P and G83A mutations have no effect on the global stability of iso-1-Cytc in presence or absence of the K73H mutation. However, both mutations destabilize the His73-mediated alkaline conformer relative to the native state. pH jump stopped-flow experiments show that the dynamics of the His73-mediated alkaline transition are significantly enhanced by the G83P mutation. Gated electron transfer studies show that the enhanced dynamics result from an increased rate of return to the native state, whereas the rate of loss of Met80 ligation is unchanged by the G83P mutation. Thus, the G83P substitution does not stiffen the conformation of the native state. Because bis-His heme ligation occurs when Cytc binds to cardiolipin-containing membranes, we studied the effect of His73 ligation on the peroxidase activity of Cytc, which acts as an early signal in apoptosis by causing oxygenation of cardiolipin. We find that the His73 alkaline conformer suppresses the peroxidase activity of Cytc. Thus, the bis-His ligated state of Cytc formed upon binding to cardiolipin is a negative effector for the peroxidase activity of Cytc early in apoptosis.
为了研究脯氨酸残基如何影响细胞色素 c 的 Ω 环 D(第 70 至 85 位残基)的动力学,我们在存在和不存在 K73H 突变的情况下制备了酵母同工型 1-细胞色素 c(同工型 1-Cytc)的 G83P 和 G83A 变体。Ω 环 D 对于控制 Cytc 的电子转移功能和凋亡中使用的 Cytc 的过氧化物酶活性都很重要,因为它提供了 Met80 血红素配体。G83P 和 G83A 突变对同工型 1-Cytc 在存在或不存在 K73H 突变的情况下的整体稳定性没有影响。然而,这两种突变都使 His73 介导的碱性构象相对于天然状态不稳定。pH 跃变停流实验表明,G83P 突变显著增强了 His73 介导的碱性转变的动力学。门控电子转移研究表明,增强的动力学源于返回天然状态的速率增加,而 G83P 突变不会改变 Met80 配位的丢失速率。因此,G83P 取代不会使天然状态的构象变硬。由于 Cytc 与含有心磷脂的膜结合时发生双 His 血红素配位,我们研究了 His73 配位对 Cytc 过氧化物酶活性的影响,而过氧化物酶活性通过引起心磷脂的氧化作用在凋亡中充当早期信号。我们发现 His73 碱性构象抑制了 Cytc 的过氧化物酶活性。因此,在心磷脂结合后形成的 Cytc 的双 His 配位状态是凋亡早期 Cytc 过氧化物酶活性的负效应物。