A male germ-cell-specific ribosome controls male fertility.
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L. Yao | Hao Zhang | Dejiu Zhang | Xintao Cao | Xuejiang Guo | Yiqiang Cui | J. Sha | Yueshuai Guo | Huiling Li | Yan Qin | Wenxiu Xie | Yunfei Zhu | Tao Jiang | Xi He | Y. Huo | Yiwei Cheng | Shu Zhang | Haixia Tu | Huijuan Xiao | Yue Wang | Yue Wang | Y. Qin | Hao Zhang
[1] Xiaofei Zhang,et al. Proteostasis regulated by testis-specific ribosomal protein RPL39L maintains mouse spermatogenesis , 2021, iScience.
[2] Oriol Vinyals,et al. Highly accurate protein structure prediction with AlphaFold , 2021, Nature.
[3] J. McCarthy,et al. Knockdown of Muscle-Specific Ribosomal Protein L3-Like Enhances Muscle Function in Healthy and Dystrophic Mice. , 2021, Nucleic acid therapeutics.
[4] OUP accepted manuscript , 2021, Nucleic Acids Research.
[5] M. O’Bryan,et al. Deficiency of the Tbc1d21 gene causes male infertility with morphological abnormalities of the sperm mitochondria and flagellum in mice , 2020, PLoS genetics.
[6] Lisa D. Cabrita,et al. How Does the Ribosome Fold the Proteome? , 2020, Annual review of biochemistry.
[7] Y. Hayashizaki,et al. Development of a Tet-On Inducible Expression System for the Anhydrobiotic Cell Line, Pv11 , 2020, bioRxiv.
[8] E. Xu,et al. LYPD4, mouse homolog of a human acrosome protein, is essential for sperm fertilizing ability and male fertility† , 2020, Biology of Reproduction.
[9] S. Abou Elela,et al. Differential expression of duplicated ribosomal protein genes modifies ribosome composition in response to stress , 2019, Nucleic acids research.
[10] Ji Miao,et al. Trimethylamine N-Oxide Binds and Activates PERK to Promote Metabolic Dysfunction. , 2019, Cell metabolism.
[11] F. Wahab,et al. DDB1 Regulates Sertoli Cell Proliferation and Testis Cord Remodeling by TGFβ Pathway , 2019, Genes.
[12] H. Schlüter,et al. Invariable stoichiometry of ribosomal proteins in mouse brain tissues with aging , 2019, Proceedings of the National Academy of Sciences.
[13] J. Testa,et al. RPL22L1 induction in colorectal cancer is associated with poor prognosis and 5-FU resistance , 2019, PloS one.
[14] Y. Pilpel,et al. Systematic Detection of Amino Acid Substitutions in Proteomes Reveals Mechanistic Basis of Ribosome Errors and Selection for Translation Fidelity. , 2019, Molecular cell.
[15] J. Gerst. Pimp My Ribosome: Ribosomal Protein Paralogs Specify Translational Control. , 2018, Trends in genetics : TIG.
[16] F. Tang,et al. Single-Cell RNA Sequencing Analysis Reveals Sequential Cell Fate Transition during Human Spermatogenesis. , 2018, Cell stem cell.
[17] M. Barna,et al. The Discovery of Ribosome Heterogeneity and Its Implications for Gene Regulation and Organismal Life. , 2018, Molecular cell.
[18] Xingdong Zhou,et al. Chloroquine inhibits autophagic flux by decreasing autophagosome-lysosome fusion , 2018, Autophagy.
[19] I. Adham,et al. Ultra-structure of the sperm head-to-tail linkage complex in the absence of the spermatid-specific LINC component SPAG4 , 2018, Histochemistry and Cell Biology.
[20] B. Klaholz,et al. Visualization of chemical modifications in the human 80S ribosome structure , 2017, Nature.
[21] K. Fujii,et al. Heterogeneous Ribosomes Preferentially Translate Distinct Subpools of mRNAs Genome-wide. , 2017, Molecular cell.
[22] Leming Shi,et al. A Comprehensive Mouse Transcriptomic BodyMap across 17 Tissues by RNA-seq , 2017, Scientific Reports.
[23] Howard Y. Chang,et al. The Mammalian Ribo-interactome Reveals Ribosome Functional Diversity and Heterogeneity , 2017, Cell.
[24] Yuanwei Zhang,et al. RPL10L Is Required for Male Meiotic Division by Compensating for RPL10 during Meiotic Sex Chromosome Inactivation in Mice , 2017, Current Biology.
[25] D. Agard,et al. MotionCor2: anisotropic correction of beam-induced motion for improved cryo-electron microscopy , 2017, Nature Methods.
[26] G. Heijne,et al. Mutational analysis of protein folding inside the ribosome exit tunnel , 2017, FEBS letters.
[27] Jüergen Cox,et al. The MaxQuant computational platform for mass spectrometry-based shotgun proteomics , 2016, Nature Protocols.
[28] S. Ventura,et al. Understanding and predicting protein misfolding and aggregation: Insights from proteomics , 2016, Proteomics.
[29] Roland Eils,et al. Complex heatmaps reveal patterns and correlations in multidimensional genomic data , 2016, Bioinform..
[30] J. McCarthy,et al. Expression of Muscle‐Specific Ribosomal Protein L3‐Like Impairs Myotube Growth , 2016, Journal of cellular physiology.
[31] David Balchin,et al. In vivo aspects of protein folding and quality control , 2016, Science.
[32] Alan Brown,et al. Organization and Regulation of Mitochondrial Protein Synthesis. , 2016, Annual review of biochemistry.
[33] H. Schwalbe,et al. Synonymous Codons Direct Cotranslational Folding toward Different Protein Conformations. , 2016, Molecular cell.
[34] N. Grigorieff,et al. CTFFIND4: Fast and accurate defocus estimation from electron micrographs , 2015, bioRxiv.
[35] Wei Xu,et al. Ctr9, a key subunit of PAFc, affects global estrogen signaling and drives ERα-positive breast tumorigenesis , 2015, Genes & development.
[36] Steven L Salzberg,et al. HISAT: a fast spliced aligner with low memory requirements , 2015, Nature Methods.
[37] Wei Yan,et al. Spata6 is required for normal assembly of the sperm connecting piece and tight head–tail conjunction , 2015, Proceedings of the National Academy of Sciences.
[38] E. Airoldi,et al. Differential Stoichiometry among Core Ribosomal Proteins , 2014, bioRxiv.
[39] W. Huber,et al. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2 , 2014, Genome Biology.
[40] J. Woolford,et al. Deletion of L4 domains reveals insights into the importance of ribosomal protein extensions in eukaryotic ribosome assembly , 2014, RNA.
[41] Varun Gupta,et al. Ribosome-omics of the human ribosome , 2014, RNA.
[42] Hemant D. Tagare,et al. The Local Resolution of Cryo-EM Density Maps , 2013, Nature Methods.
[43] Wei Shi,et al. featureCounts: an efficient general purpose program for assigning sequence reads to genomic features , 2013, Bioinform..
[44] S. Berger,et al. Separation of spermatogenic cell types using STA-PUT velocity sedimentation. , 2013, Journal of visualized experiments : JoVE.
[45] Katherine H. Schreiber,et al. The Ribosomal Protein Rpl22 Controls Ribosome Composition by Directly Repressing Expression of Its Own Paralog, Rpl22l1 , 2013, PLoS genetics.
[46] Daniel N. Wilson,et al. Structures of the human and Drosophila 80S ribosome , 2013, Nature.
[47] S. Sze,et al. Comparative evaluation of electrostatic repulsion-hydrophilic interaction chromatography (ERLIC) and high-pH reversed phase (Hp-RP) chromatography in profiling of rat kidney proteome. , 2013, Journal of proteomics.
[48] Hélène Touzet,et al. SortMeRNA: fast and accurate filtering of ribosomal RNAs in metatranscriptomic data , 2012, Bioinform..
[49] Guangchuang Yu,et al. clusterProfiler: an R package for comparing biological themes among gene clusters. , 2012, Omics : a journal of integrative biology.
[50] P. Walter,et al. The Unfolded Protein Response: From Stress Pathway to Homeostatic Regulation , 2011, Science.
[51] Shifeng Xue,et al. Ribosome-Mediated Specificity in Hox mRNA Translation and Vertebrate Tissue Patterning , 2011, Cell.
[52] Xuejiang Guo,et al. Proteomic analysis of male 4C germ cell proteins involved in mouse meiosis , 2011, Proteomics.
[53] Marco Gartmann,et al. α-Helical nascent polypeptide chains visualized within distinct regions of the ribosomal exit tunnel , 2010, Nature Structural &Molecular Biology.
[54] J. Kur,et al. The noncanonical disulfide bond as the important stabilizing element of the immunoglobulin fold of the Dr fimbrial DraE subunit. , 2010, Biochemistry.
[55] Mark D. Robinson,et al. edgeR: a Bioconductor package for differential expression analysis of digital gene expression data , 2009, Bioinform..
[56] K. Fujita,et al. OAZ-t/OAZ3 Is Essential for Rigid Connection of Sperm Tails to Heads in Mouse , 2009, PLoS genetics.
[57] Bernd Bukau,et al. The ribosome as a platform for co-translational processing, folding and targeting of newly synthesized proteins , 2009, Nature Structural &Molecular Biology.
[58] Jianli Lu,et al. Electrostatics in the ribosomal tunnel modulate chain elongation rates. , 2008, Journal of molecular biology.
[59] Vijay S Pande,et al. Side-chain recognition and gating in the ribosome exit tunnel , 2008, Proceedings of the National Academy of Sciences.
[60] Pamela A. Silver,et al. Functional Specificity among Ribosomal Proteins Regulates Gene Expression , 2007, Cell.
[61] Y. Gur,et al. Mammalian sperm translate nuclear-encoded proteins by mitochondrial-type ribosomes. , 2006, Genes & development.
[62] E. Koonin. Orthologs, Paralogs, and Evolutionary Genomics 1 , 2005 .
[63] David C Page,et al. Differential expression of sex-linked and autosomal germ-cell-specific genes during spermatogenesis in the mouse. , 2005, Human molecular genetics.
[64] Lloyd J. Old,et al. Cancer/testis antigens, gametogenesis and cancer , 2005, Nature Reviews Cancer.
[65] W. Colón,et al. Structural basis of protein kinetic stability: resistance to sodium dodecyl sulfate suggests a central role for rigidity and a bias toward beta-sheet structure. , 2004, Biochemistry.
[66] R. Henderson,et al. Optimal determination of particle orientation, absolute hand, and contrast loss in single-particle electron cryomicroscopy. , 2003, Journal of molecular biology.