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Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with <t>CSF1R</t> 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).
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Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with <t>CSF1R</t> 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).
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Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with <t>CSF1R</t> 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).
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Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with <t>CSF1R</t> 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).
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Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with <t>CSF1R</t> 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).
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Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with CSF1R 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).

Journal: Frontiers in Immunology

Article Title: MiR-34a deficiency enhances nucleic acid sensing and type I IFN signaling in a mouse model of Alzheimer’s disease

doi: 10.3389/fimmu.2026.1694824

Figure Lengend Snippet: Effects of miR-34a KO on expression levels of homeostatic and DAM genes. Expression levels (Heatmap) of marker genes for three different microglial stages (homeostatic, stage 1 DAM, and stage 2 DAM) are shown as fold changes miR-34a -/- to miR-34a +/+ Tg-SwDI mice, based on bulk RNAseq of the hippocampus (A) . (n=5/group, *Q < 0.05, ##Q < 0.001) Sequence alignment of the mature miR-34a with CSF1R 3’ untranslated region (3’UTR). The seed sequences and target mRNA are highlighted in red (B) . Effects of miR-34a KO on levels of CSF1R in lysates of the cerebral cortex were analyzed by western blotting using CSF1R antibody (C) and bar graph represents the results of densitometric analysis of CSF1R after normalizing with GAPDH levels. Data was analyzed by independent T-test. (n=4/group, ##P < 0.001).

Article Snippet: Membranes were incubated overnight at 4 °C with primary antibodies against IFITM3 (1:1000; Abcam Cat# ab15592, RRID: AB_2122095), CSF1R (1:1000; R and D Systems Cat# AF3818, RRID: AB_884158), and GAPDH (1:5000; Millipore Cat# MAB374, RRID: AB_2107445).

Techniques: Expressing, Marker, RNA sequencing, Sequencing, Western Blot