Haas A L, Rose I A
Proc Natl Acad Sci U S A. 1981 Nov;78(11):6845-8. doi: 10.1073/pnas.78.11.6845.
Hemin has been shown to inhibit specifically the energy-dependent degradation of normal and abnormal proteins in reticulocytes [Etlinger, J. D. & Goldberg, A. L. (1980) J. Biol. Chem. 255, 4563-4568]. The present work demonstrates that the action of hemin involves the multi-enzyme ATP-dependent ubiquitin-dependent proteolytic system exclusively. At a concentration of approximately 25 microM, hemin produces 50% inhibition of the degradation of 125I-labeled bovine serum albumin by this pathway. Hemin has no effect on the basal rate of proteolysis in the absence of either ATP or ubiquitin. At a concentration of hemin that gives complete inhibition of proteolysis, ATP-dependent formation of ubiquitin conjugates continues at about 50% of the control rate but the degradation of these ubiquitin conjugates is completely blocked. Inhibition of overall proteolysis and conjugate degradation are sensitive to hemin concentration to exactly the same extent. Hemin inhibition of conjugate breakdown results in the accumulation of higher molecular weight conjugates that are lost when hemin is removed by dilution. A model is proposed in which hemin acts as a negative allosteric effector in the initial step of a sequential degradative path by which intact ubiquitin conjugates are first cleaved to ubiquitin-associated fragments.
已证明氯高铁血红素能特异性抑制网织红细胞中正常和异常蛋白质的能量依赖性降解[埃特林格,J. D. & 戈德堡,A. L.(1980年)《生物化学杂志》255卷,4563 - 4568页]。目前的研究表明,氯高铁血红素的作用仅涉及多酶ATP依赖性泛素依赖性蛋白水解系统。在浓度约为25微摩尔时,氯高铁血红素通过该途径对125I标记的牛血清白蛋白降解产生50%的抑制作用。在没有ATP或泛素的情况下,氯高铁血红素对蛋白水解的基础速率没有影响。在能完全抑制蛋白水解的氯高铁血红素浓度下,ATP依赖性泛素缀合物的形成以约50%的对照速率继续,但这些泛素缀合物的降解被完全阻断。整体蛋白水解和缀合物降解的抑制对氯高铁血红素浓度的敏感程度完全相同。氯高铁血红素对缀合物分解的抑制导致高分子量缀合物的积累,当通过稀释去除氯高铁血红素时,这些缀合物会消失。提出了一个模型,其中氯高铁血红素在一个连续降解途径的初始步骤中作为负变构效应物起作用,通过该途径完整的泛素缀合物首先被切割成泛素相关片段。