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ms decrease » _ decrease (Expand Search), nn decrease (Expand Search), use decreased (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
ms decrease » _ decrease (Expand Search), nn decrease (Expand Search), use decreased (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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18061
Image_2_Nexmifa Regulates Axon Morphogenesis in Motor Neurons in Zebrafish.JPEG
Published 2022“…In particular, when compared with other pathways, DEGs were highest (84) in the axon guidance pathway, according to Organismal Systems. Efna5b, bmpr2b, and sema6ba were decreased markedly in nexmifa-depleted zebrafish embryos. …”
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18062
Table_2_Nexmifa Regulates Axon Morphogenesis in Motor Neurons in Zebrafish.XLS
Published 2022“…In particular, when compared with other pathways, DEGs were highest (84) in the axon guidance pathway, according to Organismal Systems. Efna5b, bmpr2b, and sema6ba were decreased markedly in nexmifa-depleted zebrafish embryos. …”
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18063
Image_1_Nexmifa Regulates Axon Morphogenesis in Motor Neurons in Zebrafish.JPEG
Published 2022“…In particular, when compared with other pathways, DEGs were highest (84) in the axon guidance pathway, according to Organismal Systems. Efna5b, bmpr2b, and sema6ba were decreased markedly in nexmifa-depleted zebrafish embryos. …”
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18064
Table_1_Nexmifa Regulates Axon Morphogenesis in Motor Neurons in Zebrafish.DOCX
Published 2022“…In particular, when compared with other pathways, DEGs were highest (84) in the axon guidance pathway, according to Organismal Systems. Efna5b, bmpr2b, and sema6ba were decreased markedly in nexmifa-depleted zebrafish embryos. …”
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18065
Image_3_Nexmifa Regulates Axon Morphogenesis in Motor Neurons in Zebrafish.JPEG
Published 2022“…In particular, when compared with other pathways, DEGs were highest (84) in the axon guidance pathway, according to Organismal Systems. Efna5b, bmpr2b, and sema6ba were decreased markedly in nexmifa-depleted zebrafish embryos. …”
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18066
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18067
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18068
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18069
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18070
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18071
Image_1_Identification of BAG5 as a Potential Biomarker for Parkinson’s Disease Patients With R492X PINK1 Mutation.pdf
Published 2022“…Furthermore, we reveal that BAG5 promotes the degradation of R492X mutated PINK1 protein via ubiquitin/proteasome-dependent pathway, suggesting that decreased level of BAG5 may lead to R492X mutated PINK1 protein accumulation. …”
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18072
Table_5_An Analysis of Natural Variation Reveals That OsFLA2 Controls Flag Leaf Angle in Rice (Oryza sativa L.).DOC
Published 2022“…We performed a genome-wide association study on FLA using 1.3 million single nucleotide polymorphisms (SNPs). …”
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18073
Data_Sheet_1_Late plasma exosome microRNA-21-5p depicts magnitude of reverse ventricular remodeling after early surgical repair of primary mitral valve regurgitation.pdf
Published 2022“…Exosomal microRNA (miR)-1, –21–5p, –133a, and –208a levels were measured by RT-qPCR. …”
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18074
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18075
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18076
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18077
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18078
Table_9_Two DNA Methyltransferases for Site-Specific 6mA and 5mC DNA Modification in Xanthomonas euvesicatoria.XLSX
Published 2021“…Xe(XvDMT2) was more tolerant to EtOH than Xe(XvDMT1), which had enhanced tolerance to sorbitol but decreased tolerance to polymyxin B. Using single-molecule real-time sequencing and methylation-sensitive restriction enzymes, we successfully predicted putative motifs methylated by XvDMT1 and XvDMT2, which are previously uncharacterized 6mA and 5mC DNA MTases, respectively. …”
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18079
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18080
Table_8_Two DNA Methyltransferases for Site-Specific 6mA and 5mC DNA Modification in Xanthomonas euvesicatoria.XLSX
Published 2021“…Xe(XvDMT2) was more tolerant to EtOH than Xe(XvDMT1), which had enhanced tolerance to sorbitol but decreased tolerance to polymyxin B. Using single-molecule real-time sequencing and methylation-sensitive restriction enzymes, we successfully predicted putative motifs methylated by XvDMT1 and XvDMT2, which are previously uncharacterized 6mA and 5mC DNA MTases, respectively. …”