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7 results for “rps6”

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zenodo36/100

Bridge Integrator 2, a New Specific Target for Improving Reproductive Life Span through RPS6 and NNT

<p><strong>Abstract</strong></p> <p>Female ovary is the earliest degenerated organ and it faces distinct medical disadvantages that impair primordial follicle reserve and oocyte quality. Herein, we found that bridge integrator 2 (Bin2) was predominant within mouse ovaries and oocytes, and global-knockout of <em>Bin2</em> improved both female fertility and oocyte quality with healthy physiology in mice. Ovarian quantitative proteomics and phosphomics showed that <em>Bin2</em> knockout specifically decreased only p-RPS6 of mTOR pathway; meanwhile, it increased nicotinamide nucleotide transhydrogenase (NNT), the free-radical detoxifier, over 6-fold. Mechanically, phosphorylation at Thr423 &amp; Ser424 translocated membrane Bin2 into cytoplasm to phosphorylate RPS6, while p-RPS6 bound 42-95 bp NNT UTR to inhibit NNT translation. We then synthesized a peptide (BPP) to mimic Bin2 inhibition, and found that 3-week BPP injection improved primordial follicle reserve and oocyte quality in aging or chemotherapeutics-treated mice. In all, Bin2 inhibition improve both primordial follicle reserve and oocyte quality without discernible side effects.</p> <p><strong>Supplementary Dataset Legends</strong></p> <p><strong>Supplementary Dataset 1.</strong></p> <p>Related to all fertility assays. WT mating male mice were monthly rotated between cages according to this random allocation table.</p> <p><strong>Supplementary Dataset 2.</strong></p> <p>Related to figure 2A&ndash;C. This excel file contains three sheets: The &ldquo;All identified phospho sites&rdquo; sheet includes all site-phosphorylation values and related identified information from two repeats of WT and Bin2-knockout PND-21 ovaries. The &ldquo;Bin2-KO vs WT &ge; 1.2 up&rdquo; sheet includes all differential site-phosphorylation values and related information with 1.2-fold up-regulation. The &ldquo;Bin2-KO vs WT &le; 0.83 down&rdquo; sheet includes all differential site-phosphorylation values and related information with 0.83-fold down-regulation.</p> <p><strong>Supplementary Dataset 3.</strong></p> <p>Related to figures 2F, figure 5A and 5B. This excel file contains three sheets: The &ldquo;All identified proteins&rdquo; sheet includes all protein expression values and related identified information from two repeats of WT and Bin2-knockout PND-21 ovaries. The &ldquo;Bin2-KO vs WT &ge; 1.2 up&rdquo; sheet includes all differentially-expressed protein (DEP) values and related information with 1.2-fold up-regulation. The &ldquo;Bin2-KO vs WT &le; 0.83 down&rdquo; sheet includes all differentially-expressed protein (DEP) values and related information with 0.83-fold down-regulation.</p> <p><strong>Supplementary Dataset 4.</strong></p> <p>Related to figure 2G. This excel file contains one sheet: &ldquo;All gene expression-FPKM &amp; Log2&rdquo; includes FPKM and Log2 values of all identified genes and related information from three repeats of PND-21 WT and Bin2-KO mouse ovaries. To avoid the illegal calculation of value &ldquo;0,&rdquo; we added a minimal value &ldquo;0.001&rdquo; to all original values (we have verified that this did not alter any differential trends).</p> <p><strong>Supplementary Dataset 5.</strong></p> <p>Related to figure 6N-P. This excel file contains four sheets: The &ldquo;All gene expression FPKM &amp; Log2&quot; sheet includes FPKM and Log2 values for all identified genes and related information from three repeats of the 2-month (2M), 9-month (9M), and 9-month + BPP (9M-BPP) groups. The &ldquo;|Log2(Ave-2M)vs(Ave-9M)| &ge;2&rdquo; sheet includes all genes and related information with two-fold differential expression between the 2M and 9M groups. The &ldquo;|Log2(Ave-9M-BPP)vs(Ave-9M)| &ge;2&rdquo; sheet includes all genes and related information with two-fold differential expression between the 9M-BPP and 9M groups. The &ldquo;2Mvs9M-BPPvs9M overlap&rdquo; includes all genes and related information that overlapped between &ldquo;|Log2(Ave-2M)vs(Ave-9M)| &ge;2&rdquo; and &ldquo;|Log2(Ave-9M-BPP)vs(Ave-9M)| &ge;2&rdquo;. To avoid the illegal calculation of value &ldquo;0,&rdquo; we added a minimal value &ldquo;0.001&rdquo; to all original values (we have verified that this did not alter any differential trends).</p>

opencc-by-4.0Aug 2020View details →
geo24/100

Transcriptomic analysis of rps6 mutants in Arabidopsis thaliana

GEO Series GSE222967. Arabidopsis thaliana. 15 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenJan 2024View details →
geo20/100

Ribosomal protein S6 Rps6 heterozygous null deletion effect on footpad epidermis

GEO Series GSE11331. Mus musculus. 6 samples. Type: Expression profiling by array.

openGEO-OpenJun 2008View details →
geo16/100

BIN2 Inhibition Suppress Cancer Progression and Protect Ovarian function through Downregulating HDAC1 and RPS6 Phosphorylation Respectively [RNA-Seq]

GEO Series GSE244897. Homo sapiens. 6 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenJul 2024View details →
geo12/100

BIN2 Inhibition Suppress Cancer Progression and Protect Ovarian function through Downregulating HDAC1 and RPS6 Phosphorylation Respectively [CUT&Tag]

GEO Series GSE244896. Homo sapiens. 3 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.

openGEO-OpenJul 2024View details →
geo12/100

BIN2 Inhibition Suppress Cancer Progression and Protect Ovarian function through Downregulating HDAC1 and RPS6 Phosphorylation Respectively

GEO Series GSE244898. Homo sapiens. 9 samples. Type: Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing.

openGEO-OpenJul 2024View details →
geo12/100

mRNA expression data from livers of wild-type (WT) mice, mice that lack ribosomal protein S6 (Rps6) (DS6), mice that overexpress c-Myc (Myc) and livers that lack Rps6 and also overexpress c-Myc (DS6 M

GEO Series GSE212363. Mus musculus. 4 samples. Type: Expression profiling by array.

openGEO-OpenJan 2023View details →

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