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point decrease » point increase (Expand Search)
ng decrease » nn decrease (Expand Search), _ decrease (Expand Search), gy decreased (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a point » _ point (Expand Search), 5 point (Expand Search), _ points (Expand Search)
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ERAD defects and the HFE-H63D variant are associated with increased risk of liver damages in Alpha 1-Antitrypsin Deficiency
Published 2017“…Finally, these findings support a larger scale screening for HERPUD1 R50H and HFE H63D variants in the sub-group of 1ATD patients developing significant chronic hepatic injuries (hepatomegaly, chronic cholestasis, elevated liver enzymes) and at risk developing liver cirrhosis.…”
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9149
Table_3_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9150
Image_2_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.TIF
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9151
Table_4_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9152
Table_5_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9153
Table_7_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9154
Table_6_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9155
Table_1_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9156
Image_1_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.TIF
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9157
Table_2_BcMettl4-Mediated DNA Adenine N6-Methylation Is Critical for Virulence of Botrytis cinerea.XLSX
Published 2022“…BcMETTL4 disruption and point mutations of its catalytic motif “DPPW” both resulted in significant 6mA reduction in the genomic DNA and in reduced virulence of B. cinerea. …”
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9158
Table_1_The Affinity of Hemoglobin for Oxygen Is Not Altered During COVID-19.DOCX
Published 2021“…The authors hypothesized that this phenomenon could result in a decreased oxygen (O<sub>2</sub>) binding and lead to hemolytic anemia as well. …”
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9159
Image_3_The Affinity of Hemoglobin for Oxygen Is Not Altered During COVID-19.TIF
Published 2021“…The authors hypothesized that this phenomenon could result in a decreased oxygen (O<sub>2</sub>) binding and lead to hemolytic anemia as well. …”
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9160
Table_2_The Affinity of Hemoglobin for Oxygen Is Not Altered During COVID-19.DOCX
Published 2021“…The authors hypothesized that this phenomenon could result in a decreased oxygen (O<sub>2</sub>) binding and lead to hemolytic anemia as well. …”