Dautant Alain, Meyer Philippe, Georgescauld Florian
Université de Bordeaux, CNRS, Institut de Biochimie et Génétique Cellulaires, UMR 5095, Bordeaux, France.
Sorbonne Universités, UPMC Univ. Paris 06, CNRS, Laboratoire de Biologie Moléculaire et Cellulaire des Eucaryotes, UMR 8226, Institut de Biologie Physico-Chimique, 13 rue Pierre et Marie Curie, 75005 Paris, France.
Biochemistry. 2017 Jun 13;56(23):2886-2896. doi: 10.1021/acs.biochem.7b00282. Epub 2017 May 17.
Most oligomeric proteins become active only after assembly, but why oligomerization is required to support function is not well understood. Here, we address this question using the wild type (WT) and a destabilized mutant (D93N) of the hexameric nucleoside diphosphate kinase from the pathogen Mycobacterium tuberculosis (Mt-NDPK). The conformational dynamics and oligomeric states of each were analyzed during unfolding and/or folding by hydrogen/deuterium exchange mass spectrometry (HDX-MS) at peptide resolution and by additional biochemical techniques. We found that WT and D93N native hexamers present a stable core and a flexible periphery, the latter being more flexible for the destabilized mutant. Stable but inactive species formed during unfolding of D93N and folding of WT were characterized. For the first time, we show that both of these species are nativelike dimers, each of its monomers having a major subdomain folded, while a minor subdomain (Kpn/α) remains unfolded. The Kpn/α subdomain, which belongs to the catalytic site, becomes structured only upon hexamerization, explaining why oligomerization is required for NDPK activity. Further HDX-MS studies are necessary to establish the general activation mechanism for other homo-oligomers.
大多数寡聚蛋白只有在组装后才会变得活跃,但寡聚化为何是支持功能所必需的,目前尚不清楚。在这里,我们使用来自病原体结核分枝杆菌(Mt-NDPK)的六聚体核苷二磷酸激酶的野生型(WT)和不稳定突变体(D93N)来解决这个问题。在展开和/或折叠过程中,通过氢/氘交换质谱(HDX-MS)在肽分辨率下以及通过其他生化技术分析了它们各自的构象动力学和寡聚状态。我们发现WT和D93N天然六聚体呈现出一个稳定的核心和一个灵活的外围,对于不稳定突变体来说,后者更加灵活。对D93N展开和WT折叠过程中形成的稳定但无活性的物种进行了表征。我们首次表明,这两种物种都是类似天然的二聚体,其每个单体都有一个折叠的主要亚结构域,而一个较小的亚结构域(Kpn/α)仍未折叠。属于催化位点的Kpn/α亚结构域只有在六聚化时才会形成结构,这解释了为什么寡聚化是NDPK活性所必需的。需要进一步的HDX-MS研究来建立其他同型寡聚体的一般激活机制。