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Comparison of the secretory murine DNase1 family members expressed in Pichia pastoris
by
Verhülsdonk, Lukas
, Mannherz, Hans Georg
, Napirei, Markus
in
Actin
/ Amino acids
/ Animals
/ Anticoagulants
/ Apoptosis
/ Autoimmunity
/ Biology and life sciences
/ Cell culture
/ Cell death
/ Cell differentiation
/ Chromatin
/ Cloning
/ Comparative analysis
/ Deoxyribonuclease
/ Deoxyribonuclease I - biosynthesis
/ Deoxyribonuclease I - chemistry
/ Deoxyribonuclease I - genetics
/ Deoxyribonuclease I - isolation & purification
/ Deoxyribonucleic acid
/ Differentiation (biology)
/ DNA
/ Embryology
/ Evolution, Molecular
/ Genetic aspects
/ Glycosylation
/ Heparin
/ Isoenzymes - biosynthesis
/ Isoenzymes - chemistry
/ Isoenzymes - genetics
/ Isoenzymes - isolation & purification
/ Leukocytes (neutrophilic)
/ Localization
/ Lupus
/ Medicine and Health Sciences
/ Mice
/ Muscles
/ Mutation
/ Nuclease
/ Nucleases
/ Optimization
/ Peptides
/ Physical Sciences
/ Physiological aspects
/ Pichia pastoris
/ Protein purification
/ Proteins
/ Quantitative analysis
/ Recombinant Proteins - biosynthesis
/ Recombinant Proteins - chemistry
/ Recombinant Proteins - genetics
/ Recombinant Proteins - isolation & purification
/ Research and Analysis Methods
/ Roles
/ Saccharomyces
/ Saccharomycetales - genetics
/ Saccharomycetales - metabolism
/ Skeletal muscle
/ Substrates
/ Yeast
/ Yeasts
2021
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Comparison of the secretory murine DNase1 family members expressed in Pichia pastoris
by
Verhülsdonk, Lukas
, Mannherz, Hans Georg
, Napirei, Markus
in
Actin
/ Amino acids
/ Animals
/ Anticoagulants
/ Apoptosis
/ Autoimmunity
/ Biology and life sciences
/ Cell culture
/ Cell death
/ Cell differentiation
/ Chromatin
/ Cloning
/ Comparative analysis
/ Deoxyribonuclease
/ Deoxyribonuclease I - biosynthesis
/ Deoxyribonuclease I - chemistry
/ Deoxyribonuclease I - genetics
/ Deoxyribonuclease I - isolation & purification
/ Deoxyribonucleic acid
/ Differentiation (biology)
/ DNA
/ Embryology
/ Evolution, Molecular
/ Genetic aspects
/ Glycosylation
/ Heparin
/ Isoenzymes - biosynthesis
/ Isoenzymes - chemistry
/ Isoenzymes - genetics
/ Isoenzymes - isolation & purification
/ Leukocytes (neutrophilic)
/ Localization
/ Lupus
/ Medicine and Health Sciences
/ Mice
/ Muscles
/ Mutation
/ Nuclease
/ Nucleases
/ Optimization
/ Peptides
/ Physical Sciences
/ Physiological aspects
/ Pichia pastoris
/ Protein purification
/ Proteins
/ Quantitative analysis
/ Recombinant Proteins - biosynthesis
/ Recombinant Proteins - chemistry
/ Recombinant Proteins - genetics
/ Recombinant Proteins - isolation & purification
/ Research and Analysis Methods
/ Roles
/ Saccharomyces
/ Saccharomycetales - genetics
/ Saccharomycetales - metabolism
/ Skeletal muscle
/ Substrates
/ Yeast
/ Yeasts
2021
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Comparison of the secretory murine DNase1 family members expressed in Pichia pastoris
by
Verhülsdonk, Lukas
, Mannherz, Hans Georg
, Napirei, Markus
in
Actin
/ Amino acids
/ Animals
/ Anticoagulants
/ Apoptosis
/ Autoimmunity
/ Biology and life sciences
/ Cell culture
/ Cell death
/ Cell differentiation
/ Chromatin
/ Cloning
/ Comparative analysis
/ Deoxyribonuclease
/ Deoxyribonuclease I - biosynthesis
/ Deoxyribonuclease I - chemistry
/ Deoxyribonuclease I - genetics
/ Deoxyribonuclease I - isolation & purification
/ Deoxyribonucleic acid
/ Differentiation (biology)
/ DNA
/ Embryology
/ Evolution, Molecular
/ Genetic aspects
/ Glycosylation
/ Heparin
/ Isoenzymes - biosynthesis
/ Isoenzymes - chemistry
/ Isoenzymes - genetics
/ Isoenzymes - isolation & purification
/ Leukocytes (neutrophilic)
/ Localization
/ Lupus
/ Medicine and Health Sciences
/ Mice
/ Muscles
/ Mutation
/ Nuclease
/ Nucleases
/ Optimization
/ Peptides
/ Physical Sciences
/ Physiological aspects
/ Pichia pastoris
/ Protein purification
/ Proteins
/ Quantitative analysis
/ Recombinant Proteins - biosynthesis
/ Recombinant Proteins - chemistry
/ Recombinant Proteins - genetics
/ Recombinant Proteins - isolation & purification
/ Research and Analysis Methods
/ Roles
/ Saccharomyces
/ Saccharomycetales - genetics
/ Saccharomycetales - metabolism
/ Skeletal muscle
/ Substrates
/ Yeast
/ Yeasts
2021
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Comparison of the secretory murine DNase1 family members expressed in Pichia pastoris
Journal Article
Comparison of the secretory murine DNase1 family members expressed in Pichia pastoris
2021
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Overview
Soluble nucleases of the deoxyribonuclease 1 (DNase1) family facilitate DNA and chromatin disposal (chromatinolysis) during certain forms of cell differentiation and death and participate in the suppression of anti-nuclear autoimmunity as well as thrombotic microangiopathies caused by aggregated neutrophil extracellular traps. Since a systematic and direct comparison of the specific activities and properties of the secretory DNase1 family members is still missing, we expressed and purified recombinant murine DNase1 (rmDNase1), DNase1-like 2 (rmDNase1L2) and DNase1-like 3 (rmDNase1L3) using
Pichia pastoris
. Employing different strategies for optimizing culture and purification conditions, we achieved yields of pure protein between ~3 mg/l (rmDNase1L2 and rmDNase1L3) and ~9 mg/l (rmDNase1) expression medium. Furthermore, we established a procedure for post-expressional maturation of pre-mature DNase still bound to an unprocessed tri-N-glycosylated pro-peptide of the yeast α-mating factor. We analyzed glycosylation profiles and determined specific DNase activities by the hyperchromicity assay. Additionally, we evaluated substrate specificities under various conditions at equimolar DNase isoform concentrations by lambda DNA and chromatin digestion assays in the presence and absence of heparin and monomeric skeletal muscle α-actin. Our results suggest that due to its biochemical properties mDNase1L2 can be regarded as an evolutionary intermediate isoform of mDNase1 and mDNase1L3. Consequently, our data show that the secretory DNase1 family members complement each other to achieve optimal DNA degradation and chromatinolysis under a broad spectrum of biological conditions.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Animals
/ Cloning
/ Deoxyribonuclease I - biosynthesis
/ Deoxyribonuclease I - chemistry
/ Deoxyribonuclease I - genetics
/ Deoxyribonuclease I - isolation & purification
/ DNA
/ Heparin
/ Isoenzymes - isolation & purification
/ Lupus
/ Medicine and Health Sciences
/ Mice
/ Muscles
/ Mutation
/ Nuclease
/ Peptides
/ Proteins
/ Recombinant Proteins - biosynthesis
/ Recombinant Proteins - chemistry
/ Recombinant Proteins - genetics
/ Recombinant Proteins - isolation & purification
/ Research and Analysis Methods
/ Roles
/ Saccharomycetales - genetics
/ Saccharomycetales - metabolism
/ Yeast
/ Yeasts
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