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901.
Beni Lestari Satomi Naito Akinori Endo Hidenori Nishihara Akira Kato Erika Watanabe Kimitoshi Denda Masayuki Komada Toshiaki Fukushima 《Molecular biology and evolution》2022,39(2)
The molecular evolution processes underlying the acquisition of the placenta in eutherian ancestors are not fully understood. Mouse NCK-interacting kinase (NIK)-related kinase (NRK) is expressed highly in the placenta and plays a role in preventing placental hyperplasia. Here, we show the molecular evolution of NRK, which confers its function for inhibiting placental cell proliferation. Comparative genome analysis identified NRK orthologs across vertebrates, which share the kinase and citron homology (CNH) domains. Evolutionary analysis revealed that NRK underwent extensive amino acid substitutions in the ancestor of placental mammals and has been since conserved. Biochemical analysis of mouse NRK revealed that the CNH domain binds to phospholipids, and a region in NRK binds to and inhibits casein kinase-2 (CK2), which we named the CK2-inhibitory region (CIR). Cell culture experiments suggest the following: 1) Mouse NRK is localized at the plasma membrane via the CNH domain, where the CIR inhibits CK2. 2) This mitigates CK2-dependent phosphorylation and inhibition of PTEN and 3) leads to the inhibition of AKT signaling and cell proliferation. Nrk deficiency increased phosphorylation levels of PTEN and AKT in mouse placenta, supporting our hypothesis. Unlike mouse NRK, chicken NRK did not bind to phospholipids and CK2, decrease phosphorylation of AKT, or inhibit cell proliferation. Both the CNH domain and CIR have evolved under purifying selection in placental mammals. Taken together, our study suggests that placental mammals acquired the phospholipid-binding CNH domain and CIR in NRK for regulating the CK2–PTEN–AKT pathway and placental cell proliferation. 相似文献
902.
Siranush Babakhanova Erica E. Jung Kazuhiko Namikawa Hanbin Zhang Yangdong Wang Oksana M. Subach Dmitry A. Korzhenevskiy Tatiana V. Rakitina Xian Xiao Wenjing Wang Jing Shi Mikhail Drobizhev Demian Park Lea Eisenhard Hongyun Tang Reinhard W. Kster Fedor V. Subach Edward S. Boyden Kiryl D. Piatkevich 《Protein science : a publication of the Protein Society》2022,31(3):728
In vivo imaging of model organisms is heavily reliant on fluorescent proteins with high intracellular brightness. Here we describe a practical method for rapid optimization of fluorescent proteins via directed molecular evolution in cultured mammalian cells. Using this method, we were able to perform screening of large gene libraries containing up to 2 × 107 independent random genes of fluorescent proteins expressed in HEK cells, completing one iteration of directed evolution in a course of 8 days. We employed this approach to develop a set of green and near‐infrared fluorescent proteins with enhanced intracellular brightness. The developed near‐infrared fluorescent proteins demonstrated high performance for fluorescent labeling of neurons in culture and in vivo in model organisms such as Caenorhabditis elegans, Drosophila, zebrafish, and mice. Spectral properties of the optimized near‐infrared fluorescent proteins enabled crosstalk‐free multicolor imaging in combination with common green and red fluorescent proteins, as well as dual‐color near‐infrared fluorescence imaging. The described method has a great potential to be adopted by protein engineers due to its simplicity and practicality. We also believe that the new enhanced fluorescent proteins will find wide application for in vivo multicolor imaging of small model organisms. 相似文献
903.
Mona F. Said Riham F. George Andrea Petreni Claudiu T. Supuran Nada M. Mohamed 《Journal of enzyme inhibition and medicinal chemistry》2022,37(1):701
In continuation of our previous studies to optimise potent carbonic anhydrase inhibitors, two new series of isatin N-phenylacetamide based sulphonamides were synthesised and screened for their human (h) carbonic anhydrase (EC 4.2.1.1) inhibitory activities against four isoforms hCA I, hCA II, hCA IX and hCA XII. The indole-2,3-dione derivative 2h showed the most effective inhibition profile against hCAI and hCA II (KI = 45.10, 5.87 nM) compared to acetazolamide (AAZ) as standard inhibitor. Moreover, 2h showed appreciable inhibition activity against the tumour-associated hCA XII, similar to AAZ showing KI of 7.91 and 5.70 nM, respectively. The analogs 3c and 3d showed good cytotoxicity effects, and 3c revealed promising selectivity towards lung cell line A549. Molecular docking was carried out for 2h and 3c to predict their binding conformations and affinities towards the hCA I, II, IX and XII isoforms. 相似文献
904.
Katarzyna Jakimiuk Suat Sari Robert Milewski Claudiu T. Supuran Didem hretolu Micha Tomczyk 《Journal of enzyme inhibition and medicinal chemistry》2022,37(1):421
Flavonoids are widely distributed in plants and constitute the most common polyphenolic phytoconstituents in the human diet. In this study, the in vitro inhibitory activity of 44 different flavonoids (1–44) against mushroom tyrosinase was studied, and an in silico study and type of inhibition for the most active compounds were evaluated too. Tyrosinase inhibitors block melanogenesis and take part in melanin production or distribution leading to pigmentation diseases. The in vitro study showed that quercetin was a competitive inhibitor (IC50=44.38 ± 0.13 µM) and achieved higher antityrosinase activity than the control inhibitor kojic acid. The in silico results highlight the importance of the flavonoid core with a hydroxyl at C7 as a strong contributor of interference with tyrosinase activity. According to the developed statistical model, the activity of molecules depends on hydroxylation at C3 and methylation at C8, C7, and C3 in the benzo-γ-pyrane ring of the flavonoids. 相似文献
905.
Amir Arellano-Saab Christopher S.P. McErlean Shelley Lumba Alexei Savchenko Peter J. Stogios Peter McCourt 《The Journal of biological chemistry》2022,298(4)
Crop parasites of the Striga genera are a major biological deterrent to food security in Africa and are one of the largest obstacles to poverty alleviation on the continent. Striga seeds germinate by sensing small-molecule hormones, strigolactones (SLs), that emanate from host roots. Although SL receptors (Striga hermonthica HYPOSENSITIVE TO LIGHT [ShHTL]) have been identified, discerning their function has been difficult because these parasites cannot be easily grown under laboratory conditions. Moreover, many Striga species are obligate outcrossers that are not transformable, hence not amenable to genetic analysis. By combining phenotypic screening with ShHTL structural information and hybrid drug discovery methods, we discovered a potent SL perception inhibitor for Striga, dormirazine (DOZ). Structural analysis of this piperazine-based antagonist reveals a novel binding mechanism, distinct from that of known SLs, blocking access of the hormone to its receptor. Furthermore, DOZ reduces the flexibility of protein–protein interaction domains important for receptor signaling to downstream partners. In planta, we show, via temporal additions of DOZ, that SL receptors are required at a specific time during seed conditioning. This conditioning is essential to prime seed germination at the right time; thus, this SL-sensitive stage appears to be critical for adequate receptor signaling. Aside from uncovering a function for ShHTL during seed conditioning, these results suggest that future Ag-Biotech Solutions to Striga infestations will need to carefully time the application of antagonists to exploit receptor availability and outcompete natural SLs, critical elements for successful parasitic plant invasions. 相似文献
906.
现有主流猕猴桃品种的遗传背景相对单一,亲本来源地理分布狭窄,亲缘关系不清晰。为充分利用杂种优势,该研究以广西植物研究所猕猴桃种质资源圃收集的53个猕猴桃品种(品系)叶片为材料,使用SCoT分子标记进行遗传多样性分析。结果表明:(1)10条引物在53份猕猴桃供试材料中共扩增出110条条带,各引物扩增的条带在8~15条之间,引物平均扩增条带数为11条;其中多态性条带101条,引物平均扩增多态性条带数为10.1条,多态性比例为91.81%。(2)聚类分析显示猕猴桃品种(品系)没有按类型、倍性或选育地等形成明显有规律的聚类关系。但相对来说,同一杂交后代个体之间的亲缘关系比亲本与后代个体之间的亲缘关系更近;芽变品种与原品种并没有表现出特别近的遗传距离,说明芽变材料的突变可能在基因组或染色体层面发生了较大范围的重组、复制或丢失;‘楚红’‘桂红’‘湘吉红’和‘龙藏红’4个红肉品种与‘红阳’亲缘关系明显较远,说明其可能由不同亲本衍生而来;初步验证了‘桂海四号’可能为‘Hort16A’亲本之一的推测。 相似文献
907.
The Circadian Clock Gene Circuit Controls Protein and Phosphoprotein Rhythms in Arabidopsis thaliana
Johanna Krahmer Matthew Hindle Laura K. Perby Helle K. Mogensen Tom H. Nielsen Karen J. Halliday Gerben van Ooijen Thierry Le Bihan Andrew J. Millar 《Molecular & cellular proteomics : MCP》2022,21(1):100172
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908.
909.
Jaroslava Seflova Nima R. Habibi John Q. Yap Sean R. Cleary Xuan Fang Peter M. Kekenes-Huskey L. Michel Espinoza-Fonseca Julie B. Bossuyt Seth L. Robia 《The Journal of biological chemistry》2022,298(5)
The sodium-potassium ATPase (Na/K-ATPase, NKA) establishes ion gradients that facilitate many physiological functions including action potentials and secondary transport processes. NKA comprises a catalytic subunit (alpha) that interacts closely with an essential subunit (beta) and regulatory transmembrane micropeptides called FXYD proteins. In the heart, a key modulatory partner is the FXYD protein phospholemman (PLM, FXYD1), but the stoichiometry of the alpha–beta–PLM regulatory complex is unknown. Here, we used fluorescence lifetime imaging and spectroscopy to investigate the structure, stoichiometry, and affinity of the NKA-regulatory complex. We observed a concentration-dependent binding of the subunits of NKA–PLM regulatory complex, with avid association of the alpha subunit with the essential beta subunit as well as lower affinity alpha–alpha and alpha–PLM interactions. These data provide the first evidence that, in intact live cells, the regulatory complex is composed of two alpha subunits associated with two beta subunits, decorated with two PLM regulatory subunits. Docking and molecular dynamics (MD) simulations generated a structural model of the complex that is consistent with our experimental observations. We propose that alpha–alpha subunit interactions support conformational coupling of the catalytic subunits, which may enhance NKA turnover rate. These observations provide insight into the pathophysiology of heart failure, wherein low NKA expression may be insufficient to support formation of the complete regulatory complex with the stoichiometry (alpha-beta-PLM)2. 相似文献
910.
【目的】甲烷氧化菌(methane-oxidizing bacteria, MOB)是油气微生物勘探中重要的指标微生物,其丰度与群落结构分布受到地理位置和多种环境因素的影响。本研究以采集的7个典型油气藏区域的土壤样品为研究对象,探究油气藏区域环境因素差异对甲烷氧化菌丰度与群落结构分布的影响。【方法】对采集自7个典型油气藏区域土壤样品进行pmoA基因实时荧光定量PCR (real-time fluorescence quantitative PCR, qPCR)、细菌16S rRNA基因测序和甲烷氧化菌功能基因pmoA测序,结合环境因子,比较甲烷氧化菌丰度差异,分析环境因子对甲烷氧化菌分布的影响。【结果】土壤样品的理化性质测定发现江汉盆地样品的含水量最高,约22.8%,硝态氮平均含量最高位于玉北油田,达到31.96 μg/g干重土壤,春光油田出现最高的SO42- (6 425.0 mg/g干重土壤)及Cl- (1 617.0 mg/g干重土壤)浓度。qPCR分析发现pmoA基因丰度仅为土壤样本总细菌丰度的0.77%,表明甲烷氧化菌绝对数量较少。16S rRNA基因测序发现type I型甲基八叠球菌属(Methylosarcina)、甲基嗜热菌属(Methylocaldum)、甲基球菌属(Methylococcus)与type II型的甲基胞囊菌属(Methylocystis) 4种主要的甲烷氧化菌,甲烷氧化菌中的优势菌属的相对丰度极低,最高仅为0.124%。甲烷氧化菌功能基因pmoA测序发现type II型的甲基胞囊菌属、甲基弯曲菌属(Methylosinus)为主要优势pmoA基因型。环境因子与甲烷氧化菌丰度相关性分析表明甲烷氧化菌绝对丰度与铵态氮、pH、颗粒大小、硫酸根和氯离子显著相关,而环境因子与甲烷氧化菌的相对丰度的相关性分析仅发现与颗粒大小、总氮、总磷、金属离子(Al、Fe、K、Ca、Mg、Mn、Zn和Cu)显著相关。甲烷氧化菌pmoA功能基因组成判别相关分析(discriminant correlation analysis, DCA)表明含水量(土壤湿度)、pH值、<2 μm的土壤颗粒、总氮及钙离子对甲烷氧化菌pmoA功能基因组成影响具有显著性。【结论】本研究通过对来自7个典型油气藏区域的土壤样品的甲烷氧化菌的绝对丰度与相对丰度进行分析,发现基于不同的测量方法,甲烷氧化菌的丰度存在较大差异,16S rRNA基因测序无法较为全面地反映土壤样本中优势甲烷氧化菌的群落结构,不同地理位置的甲烷氧化菌指示群落存在差异,在全国尺度下油气区及背景点均无特有的甲烷氧化菌指示群落。对环境因子与甲烷氧化菌相关性分析发现,基于不同的甲烷氧化菌丰度指标,环境因子的显著影响具有较大差别。 相似文献