异位磷酸酶 PTP1B 的高分辨率双重视觉。

IF 1.1 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS Acta crystallographica. Section F, Structural biology communications Pub Date : 2024-01-01 DOI:10.1107/S2053230X23010749
Shivani Sharma, Tamar Skaist Mehlman, Reddy Sudheer Sagabala, Benoit Boivin, Daniel A Keedy
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引用次数: 0

摘要

蛋白酪氨酸磷酸酶 1B(PTP1B)在细胞稳态中发挥着重要作用,是糖尿病、肥胖症和乳腺癌等多种人类疾病的高度有效的治疗靶点。然而,关于构象变化如何通过 PTP1B 的结构传递信息,从而实现配体的异位调节或对突变的功能反应,还有很多问题有待了解。高分辨率 X 射线晶体学可为了解蛋白质构象组合提供独特的窗口,但即使是高分辨率结构的比较也往往因数据集之间的差异(包括非同构性)而变得复杂。在这里,我们展示了迄今为止 PDB 中总计 350 个 PTP1B 结构中分辨率最高的 apo 野生型(WT)PTP1B 晶体结构。该结构采用了 PTP1B 少见的晶体形式,具有两个独特的蛋白质拷贝,它们表现出不同的构象异质性模式,从而可以对同一不对称单元中两条链的局部无序性进行有控制的比较。这些链之间的构象差异是在apo结构和最近报道的几种高分辨率配体结合结构之间进行研究的。此外,还研究了最近报道的活化双突变体高分辨率结构中的电子密度图,发现突变体结构中未建模的替代构象与新 WT 结构中构象异质性增强的区域相吻合。这些结果验证了这些突变通过增强局部动力学来发挥作用的观点,并表明 WT 酶对这种变化具有潜在的敏感性。总之,这些新数据和分析提供了 PTP1B 构象组合的详细视图,并突出了高分辨率晶体学在阐明与功能潜在相关的构象异质性方面的效用。
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High-resolution double vision of the allosteric phosphatase PTP1B.

Protein tyrosine phosphatase 1B (PTP1B) plays important roles in cellular homeostasis and is a highly validated therapeutic target for multiple human ailments, including diabetes, obesity and breast cancer. However, much remains to be learned about how conformational changes may convey information through the structure of PTP1B to enable allosteric regulation by ligands or functional responses to mutations. High-resolution X-ray crystallography can offer unique windows into protein conformational ensembles, but comparison of even high-resolution structures is often complicated by differences between data sets, including non-isomorphism. Here, the highest resolution crystal structure of apo wild-type (WT) PTP1B to date is presented out of a total of ∼350 PTP1B structures in the PDB. This structure is in a crystal form that is rare for PTP1B, with two unique copies of the protein that exhibit distinct patterns of conformational heterogeneity, allowing a controlled comparison of local disorder across the two chains within the same asymmetric unit. The conformational differences between these chains are interrogated in the apo structure and between several recently reported high-resolution ligand-bound structures. Electron-density maps in a high-resolution structure of a recently reported activating double mutant are also examined, and unmodeled alternate conformations in the mutant structure are discovered that coincide with regions of enhanced conformational heterogeneity in the new WT structure. These results validate the notion that these mutations operate by enhancing local dynamics, and suggest a latent susceptibility to such changes in the WT enzyme. Together, these new data and analysis provide a detailed view of the conformational ensemble of PTP1B and highlight the utility of high-resolution crystallography for elucidating conformational heterogeneity with potential relevance for function.

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来源期刊
Acta crystallographica. Section F, Structural biology communications
Acta crystallographica. Section F, Structural biology communications BIOCHEMICAL RESEARCH METHODSBIOCHEMISTRY &-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
1.90
自引率
0.00%
发文量
95
期刊介绍: Acta Crystallographica Section F is a rapid structural biology communications journal. Articles on any aspect of structural biology, including structures determined using high-throughput methods or from iterative studies such as those used in the pharmaceutical industry, are welcomed by the journal. The journal offers the option of open access, and all communications benefit from unlimited free use of colour illustrations and no page charges. Authors are encouraged to submit multimedia content for publication with their articles. Acta Cryst. F has a dedicated online tool called publBio that is designed to make the preparation and submission of articles easier for authors.
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