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Author response for "Heme oxygenase limits Mycobacterium marinum infection‐induced detrimental ferrostatin‐sensitive cell death in zebrafish" 作者对“血红素加氧酶限制斑马鱼中海洋分枝杆菌感染诱导的有害的铁抑素敏感细胞死亡”的回应
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-06 DOI: 10.1111/FEBS.16209/V2/RESPONSE1
K. Luo, R. Stocker, W. Britton, Kazu Kikuchi, Stefan H. Oehlers
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引用次数: 0
Review for "Structural basis of an epitope tagging system derived from Haloarcula marismortui bacteriorhodopsin I D94N and its monoclonal antibody GD‐26" “marismortui Haloarcula marismortui细菌orhodopsin I D94N及其单克隆抗体GD‐26的表位标记系统的结构基础”综述
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-03 DOI: 10.1111/febs.16184/v2/review1
K. Thakur
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引用次数: 0
Table of Contents. 目录。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 DOI: 10.1111/febs.15405
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引用次数: 0
Inferring translational heterogeneity from Saccharomyces cerevisiae ribosome profiling. 从酿酒酵母核糖体谱推断翻译异质性。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 Epub Date: 2021-02-22 DOI: 10.1111/febs.15748
Pedro do Couto Bordignon, Sebastian Pechmann

Translation of mRNAs into proteins by the ribosome is the most important step of protein biosynthesis. Accordingly, translation is tightly controlled and heavily regulated to maintain cellular homeostasis. Ribosome profiling (Ribo-seq) has revolutionized the study of translation by revealing many of its underlying mechanisms. However, equally many aspects of translation remain mysterious, in part also due to persisting challenges in the interpretation of data obtained from Ribo-seq experiments. Here, we show that some of the variability observed in Ribo-seq data has biological origins and reflects programmed heterogeneity of translation. Through a comparative analysis of Ribo-seq data from Saccharomyces cerevisiae, we systematically identify short 3-codon sequences that are differentially translated (DT) across mRNAs, that is, identical sequences that are translated sometimes fast and sometimes slowly beyond what can be attributed to variability between experiments. Remarkably, the thus identified DT sequences link to mechanisms known to regulate translation elongation and are enriched in genes important for protein and organelle biosynthesis. Our results thus highlight examples of translational heterogeneity that are encoded in the genomic sequences and tuned to optimizing cellular homeostasis. More generally, our work highlights the power of Ribo-seq to understand the complexities of translation regulation.

核糖体将mrna翻译成蛋白质是蛋白质生物合成过程中最重要的一步。因此,翻译受到严格控制和严格调节,以维持细胞内稳态。核糖体分析(Ribo-seq)通过揭示翻译的许多潜在机制,彻底改变了翻译的研究。然而,翻译的许多方面仍然是神秘的,部分原因也在于对从核糖核酸测序实验中获得的数据的解释一直存在挑战。在这里,我们表明在核糖核酸序列数据中观察到的一些变异具有生物学起源,反映了翻译的程序化异质性。通过对酿酒酵母(Saccharomyces cerevisiae)的核糖核酸序列(Ribo-seq)数据的比较分析,我们系统地鉴定了跨mrna差异翻译(DT)的短3密码子序列,即相同的序列,有时快,有时慢,超出了实验之间的可变性。值得注意的是,由此确定的DT序列与已知的调节翻译伸长的机制有关,并且富含对蛋白质和细胞器生物合成重要的基因。因此,我们的研究结果突出了翻译异质性的例子,这些异质性被编码在基因组序列中,并调整为优化细胞稳态。更一般地说,我们的工作强调了Ribo-seq在理解翻译调控的复杂性方面的力量。
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引用次数: 1
A glaucoma- and ALS-associated mutant of OPTN induces neuronal cell death dependent on Tbk1 activity, autophagy and ER stress. 青光眼和als相关的OPTN突变体通过Tbk1活性、自噬和内质网应激诱导神经元细胞死亡。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 Epub Date: 2021-02-19 DOI: 10.1111/febs.15752
Swetha Medchalmi, Priyanka Tare, Zuberwasim Sayyad, Ghanshyam Swarup

Mutations in OPTN are associated with glaucoma, an eye disease, and also with amyotrophic lateral sclerosis (ALS), a motor neuron disease. A 2-bp insertion in OPTN (691_692insAG or 2bpIns-OPTN) is associated with both glaucoma and ALS. This mutation results in frame shift after 127 amino acids, giving rise to a protein with C-terminal aberrant sequence. We have explored the mechanism of induction of cell death by this mutant in a motor neuron cell line, NSC-34, and also in a retinal cell line, 661W. Compared to wild-type OPTN, this mutant induced more cell death in NSC-34 and 661W cells. This mutant localizes predominantly in the nucleus whereas normal OPTN localizes in the cytoplasm. Deletion analysis of 2bpIns-OPTN showed that the aberrant sequence was not essential for cell death induction. This mutant interacts with TANK-binding kinase 1 (Tbk1) but not with OPTN and activates Tbk1. This mutant induced ER stress in NSC-34 cells as seen by induction of C/EBP homologous protein (CHOP) and some other genes. Induction of CHOP, autophagosomal protein LC3-II and cell death by this mutant were abrogated by Tbk1 knockdown and also by 4-phenylbutyric acid, that inhibits ER stress. Induction of CHOP and cell death by 2bpIns-OPTN was autophagy dependent as shown by the effect of Atg5 knockdown. This mutant caused increased formation of LC3-positive aggregates. Treatment of cells with autophagy inducer rapamycin reduced LC3-positive aggregates, CHOP and cell death induced by 2bpIns-OPTN. These results suggest that constitutive activation of Tbk1 by 2bpIns-OPTN leads to impaired autophagy that results in ER stress and cell death.

OPTN突变与青光眼(一种眼病)和肌萎缩性侧索硬化症(一种运动神经元疾病)有关。OPTN中2bp的插入(691_692insAG或2bpIns-OPTN)与青光眼和ALS均相关。该突变导致127个氨基酸后的框架移位,产生具有c端异常序列的蛋白。我们已经在运动神经元细胞系NSC-34和视网膜细胞系661W中探索了这种突变诱导细胞死亡的机制。与野生型OPTN相比,该突变体在NSC-34和661W细胞中诱导更多的细胞死亡。这种突变体主要定位于细胞核,而正常的OPTN定位于细胞质。对2bpIns-OPTN的缺失分析表明,该异常序列不是诱导细胞死亡所必需的。该突变体与tank结合激酶1 (Tbk1)相互作用,但不与OPTN相互作用,并激活Tbk1。该突变体通过诱导C/EBP同源蛋白(CHOP)和其他一些基因诱导NSC-34细胞内质网应激。该突变体诱导CHOP、自噬体蛋白LC3-II和细胞死亡可通过Tbk1敲除和抑制内质酸应激的4-苯基丁酸来消除。Atg5敲低的作用表明,2bpIns-OPTN诱导CHOP和细胞死亡依赖于自噬。这种突变导致lc3阳性聚集体的形成增加。用自噬诱导剂雷帕霉素处理细胞可降低lc3阳性聚集物、CHOP和2bpIns-OPTN诱导的细胞死亡。这些结果表明,2bpIns-OPTN对Tbk1的组成性激活可导致自噬受损,从而导致内质网应激和细胞死亡。
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引用次数: 18
Editor Profile: Nikos Karamanos. 编辑简介:Nikos Karamanos。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 DOI: 10.1111/febs.15891
Nikos Karamanos

In this special interview series, we profile members of The FEBS Journal editorial board to highlight their research focus, perspectives on the journal and future directions in their field. Nikos Karamanos is Professor of Biochemistry in the Department of Chemistry, University of Patras in Greece. He joined the editorial board of The FEBS Journal in 2020, having previously served on the advisory board for several years.

在这个特别的系列采访中,我们介绍了FEBS期刊编辑委员会的成员,以突出他们的研究重点,期刊的观点和他们所在领域的未来方向。Nikos Karamanos是希腊帕特雷大学化学系生物化学教授。他于2020年加入the FEBS Journal的编辑委员会,此前曾在顾问委员会任职数年。
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引用次数: 0
Crystal structure of the full-length LysR-type transcription regulator CbnR in complex with promoter DNA. 全长lysr型转录调控因子CbnR与启动子DNA复合物的晶体结构。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 Epub Date: 2021-03-08 DOI: 10.1111/febs.15764
Evdokia-Anastasia Giannopoulou, Miki Senda, Maharani Pertiwi Koentjoro, Naruhiko Adachi, Naoto Ogawa, Toshiya Senda

LysR-type transcription regulators (LTTRs) comprise one of the largest families of transcriptional regulators in bacteria. They are typically homo-tetrameric proteins and interact with promoter DNA of ~ 50-60 bp. Earlier biochemical studies have suggested that LTTR binding to promoter DNA bends the DNA and, upon inducer binding, the bend angle of the DNA is reduced through a quaternary structure change of the tetrameric LTTR, leading to the activation of transcription. To date, crystal structures of full-length LTTRs, DNA-binding domains (DBD) with their target DNAs, and the regulatory domains with and without inducer molecules have been reported. However, these crystal structures have not provided direct evidence of the quaternary structure changes of LTTRs or of the molecular mechanism underlying these changes. Here, we report the first crystal structure of a full-length LTTR, CbnR, in complex with its promoter DNA. The crystal structure showed that, in the absence of bound inducer molecules, the four DBDs of the tetrameric CbnR interact with the promoter DNA, bending the DNA by ~ 70°. Structural comparison between the DNA-free and DNA-bound forms demonstrates that the quaternary structure change of the tetrameric CbnR required for promoter region-binding arises from relative orientation changes of the three domains in each subunit. The mechanism of the quaternary structure change caused by inducer binding is also discussed based on the present crystal structure, affinity analysis between CbnR and the promoter DNA, and earlier mutational studies on CbnR. DATABASE: Atomic coordinates and structure factors for the full-length Cupriavidus necator NH9 CbnR in complex with promoter DNA are available in the Protein Data Bank under the accession code 7D98.

lysr型转录调节剂(LTTRs)是细菌中最大的转录调节剂家族之一。它们是典型的同源四聚体蛋白,与约50-60 bp的启动子DNA相互作用。早期的生化研究表明,LTTR与启动子DNA结合使DNA弯曲,在诱导剂结合后,通过四聚体LTTR的四级结构变化,DNA的弯曲角度降低,导致转录激活。迄今为止,已经报道了全长lttr的晶体结构,dna结合域(DBD)及其靶dna,以及带和不带诱导分子的调控域。然而,这些晶体结构并没有提供lttr的四级结构变化或这些变化背后的分子机制的直接证据。在这里,我们报道了全长ltr的第一个晶体结构,CbnR,与它的启动子DNA复合物。晶体结构表明,在没有结合诱导剂分子的情况下,四聚体CbnR的4个dbd与启动子DNA相互作用,使DNA弯曲约70°。无dna和dna结合形式的结构比较表明,启动子区域结合所需的四聚体CbnR的四级结构变化源于每个亚基中三个结构域的相对取向变化。基于目前的晶体结构、CbnR与启动子DNA的亲和力分析以及早期对CbnR的突变研究,讨论了诱导剂结合引起的四元结构变化的机制。数据库:全长Cupriavidus necator NH9 CbnR复合物与启动子DNA的原子坐标和结构因子可在Protein Data Bank中获得,登录代码为7D98。
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引用次数: 13
PTPRJ promotes osteoclast maturation and activity by inhibiting Cbl-mediated ubiquitination of NFATc1 in late osteoclastogenesis. PTPRJ通过抑制cbl介导的NFATc1泛素化,促进破骨细胞的成熟和活性。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 Epub Date: 2021-03-05 DOI: 10.1111/febs.15778
Moran Shalev, Esther Arman, Merle Stein, Yael Cohen-Sharir, Vlad Brumfeld, Sergey Kapishnikov, Isabelle Royal, Jan Tuckermann, Ari Elson

Bone-resorbing osteoclasts (OCLs) are multinucleated phagocytes, whose central roles in regulating bone formation and homeostasis are critical for normal health and development. OCLs are produced from precursor monocytes in a multistage process that includes initial differentiation, cell-cell fusion, and subsequent functional and morphological maturation; the molecular regulation of osteoclastogenesis is not fully understood. Here, we identify the receptor-type protein tyrosine phosphatase PTPRJ as an essential regulator specifically of OCL maturation. Monocytes from PTPRJ-deficient (JKO) mice differentiate and fuse normally, but their maturation into functional OCLs and their ability to degrade bone are severely inhibited. In agreement, mice lacking PTPRJ throughout their bodies or only in OCLs exhibit increased bone mass due to reduced OCL-mediated bone resorption. We further show that PTPRJ promotes OCL maturation by dephosphorylating the M-CSF receptor (M-CSFR) and Cbl, thus reducing the ubiquitination and degradation of the key osteoclastogenic transcription factor NFATc1. Loss of PTPRJ increases ubiquitination of NFATc1 and reduces its amounts at later stages of osteoclastogenesis, thereby inhibiting OCL maturation. PTPRJ thus fulfills an essential and cell-autonomous role in promoting OCL maturation by balancing between the pro- and anti-osteoclastogenic activities of the M-CSFR and maintaining NFATc1 expression during late osteoclastogenesis.

骨吸收破骨细胞(ocl)是一种多核吞噬细胞,在调节骨形成和体内平衡中起着核心作用,对正常的健康和发育至关重要。ocl由前体单核细胞产生,经过多个阶段的过程,包括最初的分化、细胞-细胞融合以及随后的功能和形态成熟;破骨细胞发生的分子调控尚不完全清楚。在这里,我们确定了受体型蛋白酪氨酸磷酸酶PTPRJ作为OCL成熟的重要调节因子。来自ptprj缺陷(JKO)小鼠的单核细胞正常分化和融合,但它们成熟为功能性OCLs和降解骨的能力受到严重抑制。与此一致的是,全身缺乏PTPRJ或仅在ocl中缺乏PTPRJ的小鼠由于ocl介导的骨吸收减少而表现出骨量增加。我们进一步发现PTPRJ通过去磷酸化M-CSF受体(M-CSFR)和Cbl来促进OCL成熟,从而减少关键破骨细胞转录因子NFATc1的泛素化和降解。PTPRJ的缺失会增加NFATc1的泛素化,并在破骨细胞发生的后期减少其数量,从而抑制OCL的成熟。因此,PTPRJ通过平衡M-CSFR的促和抗破骨活性,并在破骨细胞发生晚期维持NFATc1的表达,在促进OCL成熟中发挥了重要的细胞自主作用。
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引用次数: 5
Editor Profile: Hyunsook Lee. 编辑简介:李贤淑
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 DOI: 10.1111/febs.15890
The Febs Journal Editorial Team, Hyunsook Lee

In this special interview series, we profile members of The FEBS Journal editorial board to highlight their research focus, perspectives on the journal and future directions in their field. Hyunsook Lee is Professor at the Laboratory of Cancer Cell Biology at Seoul National University in Korea. She has served as an editorial board member of The FEBS Journal since 2018.

在这个特别的系列采访中,我们介绍了FEBS期刊编辑委员会的成员,以突出他们的研究重点,期刊的观点和他们所在领域的未来方向。Hyunsook Lee是韩国首尔国立大学癌细胞生物学实验室的教授。自2018年以来,她一直担任The FEBS Journal的编辑委员会成员。
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引用次数: 0
Constitutive activity of GPR26 regulated by ubiquitin-dependent degradation and its antitumor role. 泛素依赖性降解调控GPR26的组成活性及其抗肿瘤作用。
IF 5.4 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2021-08-01 Epub Date: 2021-03-01 DOI: 10.1111/febs.15763
Fang Liu, Wei Yang, Minghui Hu, Yong Zhang, Beicheng Sun, Hao Yang, Juergen Brosius, Cheng Deng

G protein-coupled receptors (GPCRs) play important roles in many physiological functions and numerous diseases. In addition to the classic ligand-stimulated receptor activity, an increasing number of studies have established that many GPCRs function constitutively in a receptor dose-dependent manner. Previous observations showed that following gene transfection, little or no protein was detectable for certain GPCRs (designated apparent state A), such as GPR26, GPR39, GPR78, GPR133, GPR139, BRS3, and LGR5, which showed strong constitutive activities. When we lysed cells in the immediate presence of western blot loading buffer, a significant increase of protein levels was detected (actual state B), which was much closer to the true expression levels under physiological conditions. GPR26 was chosen for further functional experiments as the actual state B. We identified an important ubiquitination site, K286, as well as the ubiquitin ligase E3 homologous to the E6-associated protein carboxyl terminus domain containing 3 interacting with GPR26. The pronounced differences in the protein expression and constitutive activity of GPR26 were a consequence of the ubiquitin-mediated rapid degradation mechanism. Furthermore, we identified in vitro and in vivo antitumor activity associated with high expression levels and constitutive activity of GPR26 in liver cancer cells. Hence, GPR26 could act as an antitumor gene for hepatocellular carcinoma. This study also represents the actual state B of a batch of GPCRs that actually play potentially important roles in physiological functions by their constitutive activity, which is controlled by rapid ubiquitin-dependent degradation.

G蛋白偶联受体(gpcr)在许多生理功能和许多疾病中发挥重要作用。除了经典的配体刺激受体活性外,越来越多的研究已经确定许多gpcr以受体剂量依赖的方式组成功能。先前的观察结果表明,在基因转染后,GPR26、GPR39、GPR78、GPR133、GPR139、BRS3和LGR5等特定的gprcrs(指定表观状态A)很少或没有检测到蛋白,显示出很强的组成活性。当我们在western blot加载缓冲液的直接存在下裂解细胞时,检测到蛋白水平显著增加(实际状态B),这更接近生理条件下的真实表达水平。我们确定了一个重要的泛素化位点K286,以及与GPR26相互作用的e6相关蛋白羧基末端结构域3同源的泛素连接酶E3。GPR26蛋白表达和组成活性的显著差异是泛素介导的快速降解机制的结果。此外,我们在肝癌细胞中发现了GPR26的体内和体外抗肿瘤活性与高表达水平和组成活性相关。因此,GPR26可能作为肝细胞癌的抗肿瘤基因。本研究也代表了一批gpcr的实际状态B,这些gpcr实际上通过其组成活性在生理功能中发挥潜在的重要作用,其组成活性由快速泛素依赖性降解控制。
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引用次数: 0
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