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HelD,一种与RNA聚合酶相互作用的解旋酶,形成类淀粉样纤维。

HelD, an RNA Polymerase Interacting Helicase, Forms Amyloid-Like Fibrils.

作者信息

Kaur Gundeep, Kapoor Srajan, Thakur Krishan G

机构信息

Structural Biology Laboratory, G. N. Ramachandran Protein Centre, Council of Scientific and Industrial Research-Institute of Microbial Technology, Chandigarh, India.

出版信息

Front Microbiol. 2018 Aug 21;9:1934. doi: 10.3389/fmicb.2018.01934. eCollection 2018.

Abstract

HelD, an RNA polymerase binding protein from , stimulates transcription and helps in timely adaptation of cells under diverse environmental conditions. At present, no structural information is available for HelD. In the current study, we performed size exclusion chromatography coupled to small angle X-ray scattering (SEC-SAXS) which suggests that HelD is predominantly monomeric and globular in solution. Using combination of size exclusion chromatography and analytical ultracentrifugation, we also show that HelD has a tendency to form higher order oligomers in solution. CD experiments suggest that HelD has both α-helical (∼35%) and β sheet (∼26%) secondary structural elements. Thermal melting experiments suggest that even at 90°C, there is only about 30% loss in secondary structural contents with T of 44°C. However, with the increase in temperature, there was a gain in the β-sheet content and significant irreversible loss of α-helical content. Using a combination of X-ray fiber diffraction analysis, and dye based assays including Thioflavin-T based fluorescence and Congo red binding assays, we discovered that HelD forms amyloid-like fibrils at physiologically relevant conditions . Using confocal imaging, we further show that HelD forms amyloid inclusions in . Bioinformatics-based sequence analysis performed using three independent web-based servers suggests that HelD has more than 20 hot-spots spread across the sequence that may aid the formation of amyloid-like fibrils. This discovery adds one more member to the growing list of amyloid or amyloid-like fibril forming cytosolic proteins in bacteria. Future studies aimed at resolving the function of amyloid-like fibrils or amyloid inclusions may help better understand their role, if any, in the bacterial physiology.

摘要

HelD是一种来自[具体来源未提及]的RNA聚合酶结合蛋白,它能刺激转录并有助于细胞在多种环境条件下及时适应。目前,尚无关于HelD的结构信息。在本研究中,我们进行了尺寸排阻色谱与小角X射线散射联用(SEC-SAXS)实验,结果表明HelD在溶液中主要以单体形式存在且呈球状。通过尺寸排阻色谱和分析型超速离心相结合的方法,我们还发现HelD在溶液中有形成高阶寡聚体的趋势。圆二色光谱实验表明HelD同时含有α-螺旋(约35%)和β-折叠(约26%)二级结构元件。热变性实验表明,即使在90°C时,二级结构含量仅损失约30%,熔解温度为44°C。然而,随着温度升高,β-折叠含量增加,α-螺旋含量出现显著的不可逆损失。通过结合X射线纤维衍射分析以及基于染料的检测方法,包括硫黄素-T荧光检测和刚果红结合检测,我们发现HelD在生理相关条件下会形成类淀粉样纤维。利用共聚焦成像技术,我们进一步表明HelD在[具体位置未提及]中形成淀粉样包涵体。使用三个独立的基于网络的服务器进行的基于生物信息学的序列分析表明,HelD在整个序列中分布着20多个可能有助于类淀粉样纤维形成的热点区域。这一发现为细菌中不断增加的形成淀粉样或类淀粉样纤维的胞质蛋白列表又增添了一个成员。未来旨在解析类淀粉样纤维或淀粉样包涵体功能的研究可能有助于更好地理解它们在细菌生理学中的作用(如果有的话)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a71/6111841/8e28bf67ad54/fmicb-09-01934-g001.jpg

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