Centre de Recherche en Biologie cellulaire de Montpellier (CRBM), CNRS, Université de Montpellier, 34090 Montpellier, France.
Institut des Biomolécules Max Mousseron (IBMM), CNRS, Université de Montpellier, ENSCM, Faculté de Pharmacie, 34090 Montpellier, France.
Int J Mol Sci. 2019 Feb 26;20(5):1021. doi: 10.3390/ijms20051021.
HslVU is an ATP-dependent proteolytic complex present in certain bacteria and in the mitochondrion of some primordial eukaryotes, including deadly parasites such as . It is formed by the dodecameric protease HslV and the hexameric ATPase HslU, which binds via the C-terminal end of its subunits to HslV and activates it by a yet unclear allosteric mechanism. We undertook the characterization of HslV from (LmHslV), a trypanosomatid that expresses two isoforms for HslU, LmHslU1 and LmHslU2. Using a novel and sensitive peptide substrate, we found that LmHslV can be activated by peptides derived from the C-termini of both LmHslU1 and LmHslU2. Truncations, Ala- and D-scans of the C-terminal dodecapeptide of LmHslU2 (LmC12-U2) showed that five out of the six C-terminal residues of LmHslU2 are essential for binding to and activating HslV. Peptide cyclisation with a lactam bridge allowed shortening of the peptide without loss of potency. Finally, we found that dodecapeptides derived from HslU of other parasites and bacteria are able to activate LmHslV with similar or even higher efficiency. Importantly, using electron microscopy approaches, we observed that the activation of LmHslV was accompanied by a large conformational remodeling, which represents a yet unidentified layer of control of HslV activation.
HslVU 是一种存在于某些细菌和某些原始真核生物线粒体中的 ATP 依赖性蛋白水解复合物,包括致命寄生虫如 。它由十二聚体蛋白酶 HslV 和六聚体 ATP 酶 HslU 组成,通过其亚基的 C 末端与 HslV 结合,并通过尚未阐明的变构机制激活它。我们对 (LmHslV)中的 HslV 进行了表征,这是一种表达两种 HslU 同工型的原生动物,即 LmHslU1 和 LmHslU2。使用一种新颖且敏感的肽底物,我们发现 LmHslV 可以被来自 LmHslU1 和 LmHslU2 的 C 末端的肽激活。对 LmHslU2 的 C 末端十二肽(LmC12-U2)的截断、Ala- 和 D-扫描显示,LmHslU2 的六个 C 末端残基中有五个对于与 HslV 结合和激活至关重要。用内酰胺桥环化肽允许缩短肽而不损失效力。最后,我们发现来自其他寄生虫和细菌的 HslU 的十二肽能够以相似甚至更高的效率激活 LmHslV。重要的是,使用电子显微镜方法,我们观察到 LmHslV 的激活伴随着大的构象重塑,这代表了 HslV 激活的尚未识别的控制层。