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从 DEPTOR 复合物的计算机分析中洞察 DEPTOR 的调控作用。

Insights into DEPTOR regulation from in silico analysis of DEPTOR complexes.

机构信息

Centre for Chemical Biology, Universiti Sains Malaysia, 10 Persiaran Bukit Jambul, 11900 Penang, Malaysia; USM-RIKEN International Centre for Ageing Science (URICAS), Universiti Sains Malaysia, 11800 Penang, Malaysia.

Centre for Chemical Biology, Universiti Sains Malaysia, 10 Persiaran Bukit Jambul, 11900 Penang, Malaysia; USM-RIKEN International Centre for Ageing Science (URICAS), Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

J Struct Biol. 2020 Nov 1;212(2):107602. doi: 10.1016/j.jsb.2020.107602. Epub 2020 Aug 13.

Abstract

DEPTOR is an inhibitor of the mTOR kinase which controls cell growth. DEPTOR consists of two DEP domains and a PDZ domain connected by an unstructured linker, and its stability is tightly regulated through post-translational modifications of its linker region that contains the SSGYFS degron. Based on the mTORC1 complex, our modelling suggests a possible spatial arrangement of DEPTOR which is characterised to form a dimer. Our model shows that the two PDZ domains of a DEPTOR dimer bind separately to the dimeric mTOR's FAT domains ~130 Å apart, while each of the two extended linkers is sufficiently long to span from the FAT domain to the kinase domain of mTOR and beyond to join a shared dimer of the DEP domains. This places the linker's S299 closest to the kinase's catalytic site, indicating that phosphorylation would start with it and successively upstream towards DEPTOR's degron. The CK1α kinase is reportedly responsible for the phosphorylation of the degron, and our docking analysis further reveals that CK1α contains sites to bind DEPTOR's pS286, pS287 and pT295, which may act as priming phosphates for the phosphorylation of the degron's S291. DEPTOR's linker can also be ubiquitylated by the UbcH5A-SCF complex without its PDZ dissociating from mTOR according to the modelling. As the catalytic cleft of mTOR's kinase is restricted, interactions between the kinase's unstructured segment surrounding the cleft and DEPTOR's linker, which may involve S293 and S299, may be critical to controlling DEPTOR's access to the catalytic cleft and hence its phosphorylation by mTOR in a manner dependent on mTOR's activation.

摘要

DEPTO 是一种 mTOR 激酶抑制剂,可控制细胞生长。DEPTO 由两个 DEP 结构域和一个 PDZ 结构域组成,通过其连接子区域的翻译后修饰来紧密调节其稳定性,该连接子区域包含 SSGYFS 降解子。基于 mTORC1 复合物,我们的模型表明 DEPTOR 可能存在一种空间排列方式,其特征是形成二聚体。我们的模型表明,二聚体 DEPTOR 的两个 PDZ 结构域分别结合到距离约 130Å 的二聚体 mTOR 的 FAT 结构域上,而每个延长的连接子都足够长,可以从 FAT 结构域跨越到 mTOR 的激酶结构域,并进一步与 DEP 结构域的共享二聚体结合。这使得连接子的 S299 最接近激酶的催化位点,表明磷酸化将从它开始,并沿着连接子向 DEPTOR 的降解子依次进行。据报道,CK1α 激酶负责降解子的磷酸化,我们的对接分析进一步表明,CK1α 包含与 DEPTOR 的 pS286、pS287 和 pT295 结合的位点,这些位点可能作为降解子 S291 磷酸化的起始磷酸化。根据模型,DEPTO 的连接子也可以被 UbcH5A-SCF 复合物泛素化,而其 PDZ 结构域无需与 mTOR 分离。由于 mTOR 激酶的催化裂缝受到限制,激酶周围无规则片段与 DEPTOR 连接子之间的相互作用,可能涉及 S293 和 S299,对于控制 DEPTOR 进入催化裂缝及其通过 mTOR 磷酸化的方式可能至关重要,这种磷酸化方式依赖于 mTOR 的激活。

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