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Absolute quantitation of human wild-type DNAI1 protein in lung tissue using a nanoLC-PRM-MS-based targeted proteomics approach coupled with immunoprecipitation
by
Sun, Gang
, Wang, Hui
, DeRosa, Frank
, Ni, Xiaoyan
, Randall, Kristen
, Boeglin, Lianne
, Woo, Caroline
, Clark, Nicholas
, Chivukula, Sudha
in
Antibodies
/ Biomedical and Life Sciences
/ Biotechnology
/ Cell Biology
/ Cilia
/ Clinical translation of targeted proteomics
/ Drug development
/ Dynein
/ Immunoprecipitation
/ Life Sciences
/ Lungs
/ Mass spectrometry
/ Methodology
/ Mutation
/ Pathology
/ Primary ciliary dyskinesia
/ Proteins
/ Proteomics
/ Quantitation
/ Scientific imaging
/ Structure-function relationships
/ Tissues
2024
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Absolute quantitation of human wild-type DNAI1 protein in lung tissue using a nanoLC-PRM-MS-based targeted proteomics approach coupled with immunoprecipitation
by
Sun, Gang
, Wang, Hui
, DeRosa, Frank
, Ni, Xiaoyan
, Randall, Kristen
, Boeglin, Lianne
, Woo, Caroline
, Clark, Nicholas
, Chivukula, Sudha
in
Antibodies
/ Biomedical and Life Sciences
/ Biotechnology
/ Cell Biology
/ Cilia
/ Clinical translation of targeted proteomics
/ Drug development
/ Dynein
/ Immunoprecipitation
/ Life Sciences
/ Lungs
/ Mass spectrometry
/ Methodology
/ Mutation
/ Pathology
/ Primary ciliary dyskinesia
/ Proteins
/ Proteomics
/ Quantitation
/ Scientific imaging
/ Structure-function relationships
/ Tissues
2024
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Absolute quantitation of human wild-type DNAI1 protein in lung tissue using a nanoLC-PRM-MS-based targeted proteomics approach coupled with immunoprecipitation
by
Sun, Gang
, Wang, Hui
, DeRosa, Frank
, Ni, Xiaoyan
, Randall, Kristen
, Boeglin, Lianne
, Woo, Caroline
, Clark, Nicholas
, Chivukula, Sudha
in
Antibodies
/ Biomedical and Life Sciences
/ Biotechnology
/ Cell Biology
/ Cilia
/ Clinical translation of targeted proteomics
/ Drug development
/ Dynein
/ Immunoprecipitation
/ Life Sciences
/ Lungs
/ Mass spectrometry
/ Methodology
/ Mutation
/ Pathology
/ Primary ciliary dyskinesia
/ Proteins
/ Proteomics
/ Quantitation
/ Scientific imaging
/ Structure-function relationships
/ Tissues
2024
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Absolute quantitation of human wild-type DNAI1 protein in lung tissue using a nanoLC-PRM-MS-based targeted proteomics approach coupled with immunoprecipitation
Journal Article
Absolute quantitation of human wild-type DNAI1 protein in lung tissue using a nanoLC-PRM-MS-based targeted proteomics approach coupled with immunoprecipitation
2024
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Overview
Background
Dynein axonemal intermediate chain 1 protein (DNAI1) plays an essential role in cilia structure and function, while its mutations lead to primary ciliary dyskinesia (PCD). Accurate quantitation of DNAI1 in lung tissue is crucial for comprehensive understanding of its involvement in PCD, as well as for developing the potential PCD therapies. However, the current protein quantitation method is not sensitive enough to detect the endogenous level of DNAI1 in complex biological matrix such as lung tissue.
Methods
In this study, a quantitative method combining immunoprecipitation with nanoLC-MS/MS was developed to measure the expression level of human wild-type (WT) DNAI1 protein in lung tissue. To our understanding, it is the first immunoprecipitation (IP)-MS based method for absolute quantitation of DNAI1 protein in lung tissue. The DNAI1 quantitation was achieved through constructing a standard curve with recombinant human WT DNAI1 protein spiked into lung tissue matrix.
Results
This method was qualified with high sensitivity and accuracy. The lower limit of quantitation of human DNAI1 was 4 pg/mg tissue. This assay was successfully applied to determine the endogenous level of WT DNAI1 in human lung tissue.
Conclusions
The results clearly demonstrate that the developed assay can accurately quantitate low-abundance WT DNAI1 protein in human lung tissue with high sensitivity, indicating its high potential use in the drug development for DNAI1 mutation-caused PCD therapy.
Publisher
BioMed Central,BioMed Central Ltd
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