Shukla Shivam, Komarek Jan, Novakova Zora, Nedvedova Jana, Ustinova Kseniya, Vankova Pavla, Kadek Alan, Uetrecht Charlotte, Mertens Haydyn, Barinka Cyril
Institute of Biotechnology of the Czech Academy of Sciences, BIOCEV, Vestec, Czech Republic.
Department of Physical Chemistry, Faculty of Natural Science, Charles University, Prague, Czech Republic.
FEBS J. 2023 Feb;290(3):821-836. doi: 10.1111/febs.16616. Epub 2022 Sep 19.
Human histone deacetylase 6 (HDAC6) is a structurally unique, multidomain protein implicated in a variety of physiological processes including cytoskeletal remodelling and the maintenance of cellular homeostasis. Our current understanding of the HDAC6 structure is limited to isolated domains, and a holistic picture of the full-length protein structure, including possible domain interactions, is missing. Here, we used an integrative structural biology approach to build a solution model of HDAC6 by combining experimental data from several orthogonal biophysical techniques complemented by molecular modelling. We show that HDAC6 is best described as a mosaic of folded and intrinsically disordered domains that in-solution adopts an ensemble of conformations without any stable interactions between structured domains. Furthermore, HDAC6 forms dimers/higher oligomers in a concentration-dependent manner, and its oligomerization is mediated via the positively charged N-terminal microtubule-binding domain. Our findings provide the first insights into the structure of full-length human HDAC6 and can be used as a basis for further research into structure function and physiological studies of this unique deacetylase.
人类组蛋白去乙酰化酶6(HDAC6)是一种结构独特的多结构域蛋白,参与多种生理过程,包括细胞骨架重塑和细胞稳态的维持。我们目前对HDAC6结构的了解仅限于分离的结构域,缺少全长蛋白结构的整体图景,包括可能的结构域相互作用。在这里,我们采用综合结构生物学方法,通过结合来自几种正交生物物理技术的实验数据,并辅以分子建模,构建了HDAC6的溶液模型。我们表明,HDAC6最好被描述为折叠结构域和内在无序结构域的镶嵌体,在溶液中采用一系列构象,结构域之间没有任何稳定的相互作用。此外,HDAC6以浓度依赖的方式形成二聚体/更高阶寡聚体,其寡聚化通过带正电荷的N端微管结合结构域介导。我们的发现为全长人类HDAC6的结构提供了初步见解,可作为进一步研究这种独特去乙酰化酶的结构功能和生理学的基础。