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  1. 421
  2. 422

    Cell Type Specific Suppression of Hyper-Recombination by Human RAD18 Is Linked to Proliferating Cell Nuclear Antigen K164 Ubiquitination by Colette B. Rogers, Wendy Leung, Ryan M. Baxley, Rachel E. Kram, Liangjun Wang, Joseph P. Buytendorp, Khoi Le, David A. Largaespada, Eric A. Hendrickson, Anja-Katrin Bielinsky

    Published 2025-01-01
    “…RAD18 also regulates homologous recombination (HR) repair of DNA breaks; however, the current literature describing the contribution of RAD18 to HR in mammalian systems has not reached a consensus. To investigate this, we examined three independent <i>RAD18</i>-null human cell lines. …”
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  3. 423

    Efficacy Study of Carrageenan as an Alternative Infused Material (Filler) in Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) Porous 3D Scaffold by Nor Syamimi Che Johari, Syazwan Aizad, Saiful Irwan Zubairi

    Published 2017-01-01
    “…Polymeric porous 3D scaffold plays an important role in culturing mammalian cells as ex vivo model. However, the scaffold used is ineffective due to its structural and cell acceptability weaknesses. …”
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  4. 424
  5. 425

    NeuTox 2.0: A hybrid deep learning architecture for screening potential neurotoxicity of chemicals based on multimodal feature fusion by Xudi Pang, Xuejun He, Ying Yang, Ling Wang, Yuzhen Sun, Huiming Cao, Yong Liang

    Published 2025-01-01
    “…Four datasets were used to profile neurotoxicity; these were related to blood–brain barrier permeability, neuronal cytotoxicity, microelectrode array–based neural activity, and mammalian neurotoxicity. Comprehensive performance evaluations demonstrated that NeuTox 2.0 has relatively higher predictive capability across all statistical metrics. …”
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  6. 426

    Successful establishment of CRISPR-based genome-edited clonal cell populations from primary cells of buffalo, goats, and sheep by Priyanka Singh, Bosco Jose, Devika Gautam, Aseem Tara, Shreya Malhotra, Sacchinandan De, Manoj K. Singh, Naresh L. Selokar

    Published 2023-11-01
    “… Genome editing technology has great potential for precise DNA modification in mammalian cells. The ability to precisely generate the clonal population of CRISPR-edited geno-type is of great importance in gene function/ pathway analysis, drug discovery, and production of genome-edited animals. …”
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  7. 427

    H3K9 post-translational modifications regulate epiblast/primitive endoderm specification in rabbit blastocysts by Wilhelm Bouchereau, Hong-Thu Pham, Worawalan Samruan, Van-Hong Vu, Thierry Joly, Marielle Afanassieff, Pierre Savatier, Rangsun Parnpai, Nathalie Beaujean

    Published 2025-01-01
    “…However, the role of these modifications in lineage segregation in the mammalian blastocyst remains poorly understood. We demonstrate that di- and tri-methylation marks, H3K9me2 and H3K9me3, decrease during cavitation and expansion of the rabbit blastocyst. …”
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  8. 428

    Unveiling new therapeutic horizons in rheumatoid arthritis: an In-depth exploration of circular RNAs derived from plasma exosomes by Guoqing Li, Hongyi Chen, Jiacheng Shen, Yimin Ding, Jingqiong Chen, Yongbin Zhang, Mingrui Tang, Nan Xu, Yuxuan Fang

    Published 2025-01-01
    “…Abstract Rheumatoid arthritis (RA), a chronic inflammatory joint disease causing permanent disability, involves exosomes, nanosized mammalian extracellular particles. Circular RNA (circRNA) serves as a biomarker in RA blood samples. …”
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  9. 429

    Effect of custom-designed transfection buffer on delivery of genome modification components into primary cells of buffalo, cattle, goats, and sheep by Shreya Malhotra, Priyanka Singh, Aseem Tara, Bosco Jose, Devika Gautam, Ram Prasad, Gaurav Tripathi, Sacchinandan De, Naresh L. Selokar

    Published 2023-11-01
    “…Previously, we custom-designed a transfection buffer to deliver exogenous genetic components into mammalian cells. In the present study, we examined the effect of the developed buffer on transfection rates and cell viability of primary somatic cells from buffalo, cattle, goats, and sheep. …”
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  10. 430

    Liquid crystal template-assisted electrodeposition of nanoporous nickel microspheres: A sensitive electrochemical sensing platform for electrocatalytic oxidation and quantitative d... by R. Dehdari Vais, M. Negahdary, S.R. Rasouli Nasrabadi, A. Rahi, S.A. Dastgheib, H. Heli

    Published 2025-02-01
    “…l-carnitine (LC) is a vital constituent of mammalian tissues, has a significant role in the function of different biological systems, and its determination is of great interest. …”
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  11. 431

    Fetal Cartilage Progenitor Cells in the Repair of Osteochondral Defects by Bruno C. Menarim, DVM, PhD, Chan Hee Mok, PhD, Kirsten E. Scoggin, PhD, Alexis Gornik, DVM, Emma N. Adam, DVM, PhD, Shavahn C. Loux, PhD, James N. MacLeod, VMD, PhD

    Published 2025-03-01
    “…In salamanders, interzone (IZN) tissue can regenerate large joint lesions. The mammalian homolog to this tissue exists during fetal development and exhibits remarkable chondrogenesis in vitro. …”
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  12. 432

    HP1 Promotes the Centromeric Localization of ATRX and Protects Cohesion by Interfering Wapl Activity in Mitosis by Erchen Zhang, Lei Peng, Kejia Yuan, Zexian Ding, Qi Yi

    Published 2025-01-01
    “…During mitosis, most ATRX proteins are removed from chromosomal arms, leaving a pool near the centromere region in mammalian cells, which is critical for accurate chromosome congression and sister chromatid cohesion protection. …”
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  13. 433

    Identification of novel cytoskeleton protein involved in spermatogenic cells and sertoli cells of non-obstructive azoospermia based on microarray and bioinformatics analysis by Danial Hashemi Karoii, Hossein Azizi, Maryam Darvari, Ali Qorbanee, Dawan Jamal Hawezy

    Published 2025-01-01
    “…Abstract Background During mammalian spermatogenesis, the cytoskeleton system plays a significant role in morphological changes. …”
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  14. 434

    Phosphorylation of Bok at Ser-8 blocks its ability to suppress IP3R-mediated calcium mobilization by Caden G. Bonzerato, Katherine R. Keller, Richard J. H. Wojcikiewicz

    Published 2025-01-01
    “…Methods Bok Ser-8 phosphorylation was characterized using purified proteins, G-protein coupled receptor agonists that increase cAMP levels in intact cells, mass spectrometry, and immunoreactivity changes. Also, using mammalian cells that exclusively or predominately express IP3R1, to which Bok binds strongly, and a fluorescent Ca2+-sensitive dye or a genetically-encoded Ca2+ sensor, we explored how endogenous and exogenous Bok controls the Ca2+ mobilizing function of IP3R1, and whether Bok phosphorylation at Ser-8, or replacement of Ser-8 with a phosphomimetic amino acid, is regulatory. …”
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  15. 435

    Distinct Expression Patterns of Apoptosis and Autophagy-Associated Proteins and Genes during Postnatal Development of Spiral Ganglion Neurons in Rat by Shule Hou, Penghui Chen, Jiarui Chen, Junmin Chen, Lianhua Sun, Jianyong Chen, Baihui He, Yue Li, Huan Qin, Yuren Hong, Shuna Li, Jingchun He, Dekun Gao, Fabio Mammano, Jun Yang

    Published 2020-01-01
    “…The development of spiral ganglion neurons (SGNs) in addition to Corti’s organ in the mammalian cochlea remains crucial in the first two-week postnatal period. …”
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  16. 436

    Protective Effects of NaHS/miR-133a-3p on Lipopolysaccharide-Induced Cardiomyocytes Injury by Yi-Mei Jin, Ai-Rong Huang, Mei-qian Yu, Wan-Ding Ye, Xiao-guang Hu, Hua-min Wang, Zhi-wei Xu, Dong-shi Liang

    Published 2023-01-01
    “…The adenosine triphosphate (ATP) kit was used to detect ATP content; real-time quantitative polynucleotide chain reaction (qPCR) was used to measure the levels of mammalian targets of rapamycin (mTOR), AMP-dependent protein kinase (AMPK), and miR-133a-3p, and Western blot (WB) was used to detect protein levels of mTOR, AMPK, myosin-like Bcl2 interacting protein (Beclin-1), microtubule-associated protein 1 light chain 3 (LC3I/II), and P62 (sequestosome-1, sqstm-1/P62). …”
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  17. 437

    Molecular switch of the dendrite-to-spine transport of TDP-43/FMRP-bound neuronal mRNAs and its impairment in ASD by Pritha Majumder, Biswanath Chatterjee, Khadiza Akter, Asmar Ahsan, Su Jie Tan, Chi-Chen Huang, Jen-Fei Chu, Che-Kun James Shen

    Published 2025-01-01
    “…., immunoprecipitation (IP), RNA-IP, Immunofluorescence (IF)/fluorescence in situ hybridization (FISH), live cell imaging, live cell tracking of RNA using beacon, and mouse model study are used to elucidate a novel mechanism regulating dendritic spine transport of mRNAs in mammalian neurons. Results We demonstrate here that brief mGluR1 activation-mediated dephosphorylation of pFMRP (S499) results in the dissociation of FMRP from TDP-43 and handover of TDP-43/Rac1 mRNA complex from the dendritic transport track on microtubules to myosin V track on the spine actin filaments. …”
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  18. 438

    The Immunohistochemical Prognostic Value of Nuclear and Cytoplasmic Silent Information Regulator 1 Protein Expression in Saudi Patients with Breast Cancer by Bayan Alharbi, Alia Aldahlawi, Mourad Assidi, Fatemah Basingab, Kawther Zaher, Jehan Alrahimi, Sara Mokhtar, Jaudah Al-Maghrabi, Abdelbaset Buhmeida, Kaltoom Al-Sakkaf

    Published 2025-01-01
    “…Background: The mammalian NAD-dependent deacetylase sirtuin-1 family (named also silent information regulator or SIRT family, where NAD stands for “nicotinamide adenine dinucleotide” (NAD)) appears to have a dual role in several human cancers by modulating cell proliferation and death. …”
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  19. 439

    E3 ubiquitin ligase SYVN1 as a promising therapeutic target for diverse human diseases by Li Zhu, Yong-Ping Liu, Yuan-Wang, Bo-Xuan Sun, Yu-Ting Huang, Ji-Kai Zhao, Jian-Feng Liu, Li-Ming Yu, Hui-Shan Wang

    Published 2025-02-01
    “…Numerous studies conducted in recent years indicate that mammalian E3 ubiquitin ligases serve as key regulators in the maintenance of cellular homeostasis by targeting the ubiquitination of substrate proteins and activating downstream signaling pathways. …”
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  20. 440

    Tgfbr1 regulates lateral plate mesoderm and endoderm reorganization during the trunk to tail transition by Anastasiia Lozovska, Ana Casaca, Ana Novoa, Ying-Yi Kuo, Arnon D Jurberg, Gabriel G Martins, Anna-Katerina Hadjantonakis, Moises Mallo

    Published 2025-01-01
    “…During the trunk to tail transition the mammalian embryo builds the outlets for the intestinal and urogenital tracts, lays down the primordia for the hindlimb and external genitalia, and switches from the epiblast/primitive streak (PS) to the tail bud as the driver of axial extension. …”
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