Javascript must be enabled to continue!
EXPLICIT-Kinase: a gene expression predictor for dissecting the functions of the Arabidopsis kinome
View through CrossRef
ABSTRACT
Protein kinases regulate virtually all cellular processes, but it remains challenging to determine the functions of all protein kinases, collectively called the kinome, in any species. We developed an approach called EXPLICIT-Kinase to predict the functions of the Arabidopsis kinome. Because the activities of many kinases can be regulated transcriptionally, their gene expression patterns provide clues to their functions. A universal gene expression predictor for Arabidopsis was constructed to predict the expression of 30,172 non-kinase genes based on the expression of 994 protein kinase genes. The model reconstituted highly accurate transcriptomes for diverse Arabidopsis samples. It identified the significant kinases as predictor kinases for predicting the expression of Arabidopsis genes and pathways. Strikingly, these predictor kinases were often known regulators of the related pathways, as exemplified by those involved in cytokinesis, tissue development, and stress responses. Comparative analyses have revealed that portions of these predictor kinases, including the novel ones, are shared and conserved between Arabidopsis and maize. The conservation between species provide additional evidence to support the novel predictor kinases as bona fide regulators of the pathways involved. Thus our approach enables the systematic dissection of the functions of the Arabidopsis kinome.
Title: EXPLICIT-Kinase: a gene expression predictor for dissecting the functions of the Arabidopsis kinome
Description:
ABSTRACT
Protein kinases regulate virtually all cellular processes, but it remains challenging to determine the functions of all protein kinases, collectively called the kinome, in any species.
We developed an approach called EXPLICIT-Kinase to predict the functions of the Arabidopsis kinome.
Because the activities of many kinases can be regulated transcriptionally, their gene expression patterns provide clues to their functions.
A universal gene expression predictor for Arabidopsis was constructed to predict the expression of 30,172 non-kinase genes based on the expression of 994 protein kinase genes.
The model reconstituted highly accurate transcriptomes for diverse Arabidopsis samples.
It identified the significant kinases as predictor kinases for predicting the expression of Arabidopsis genes and pathways.
Strikingly, these predictor kinases were often known regulators of the related pathways, as exemplified by those involved in cytokinesis, tissue development, and stress responses.
Comparative analyses have revealed that portions of these predictor kinases, including the novel ones, are shared and conserved between Arabidopsis and maize.
The conservation between species provide additional evidence to support the novel predictor kinases as bona fide regulators of the pathways involved.
Thus our approach enables the systematic dissection of the functions of the Arabidopsis kinome.
Related Results
Abstract 1613: Characterization of the Src-regulated kinome by chemical proteomics
Abstract 1613: Characterization of the Src-regulated kinome by chemical proteomics
Abstract
Enhanced Src activation has been implicated in many cancers, including those of breast, lung and pancreas. However single-agent therapies targeting Src have...
Phosphatidylinositol 3′-kinase associates with an insulin receptor substrate-1 serine kinase distinct from its intrinsic serine kinase
Phosphatidylinositol 3′-kinase associates with an insulin receptor substrate-1 serine kinase distinct from its intrinsic serine kinase
Serine phosphorylation of insulin receptor substrate-1 (IRS-1) has been proposed as a counter-regulatory mechanism in insulin and cytokine signalling. Here we report that IRS-1 is ...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
KRSA: Network-based Prediction of Differential Kinase Activity from Kinome Array Data
KRSA: Network-based Prediction of Differential Kinase Activity from Kinome Array Data
Abstract
Motivation
Phosphorylation by serine-threonine and tyrosine kinases is critical for determining protein function. Arra...
Characterisation of a plant 3‐phosphoinositide‐dependent protein kinase‐1 homologue which contains a pleckstrin homology domain
Characterisation of a plant 3‐phosphoinositide‐dependent protein kinase‐1 homologue which contains a pleckstrin homology domain
A plant homologue of mammalian 3‐phosphoinositide‐dependent protein kinase‐1 (PDK1) has been identified in Arabidopsis and rice which displays 40% overall identity with human 3‐pho...
KRSA: An R package and R Shiny web application for an end-to-end upstream kinase analysis of kinome array data
KRSA: An R package and R Shiny web application for an end-to-end upstream kinase analysis of kinome array data
Phosphorylation by serine-threonine and tyrosine kinases is critical for determining protein function. Array-based platforms for measuring reporter peptide signal levels allow for ...
Expression and polymorphism of genes in gallstones
Expression and polymorphism of genes in gallstones
ABSTRACT
Through the method of clinical case control study, to explore the expression and genetic polymorphism of KLF14 gene (rs4731702 and rs972283) and SR-B1 gene...
The Prognostic Impact of High MEL1 Gene Expression in Pediatric Acute Myeloid Leukemia
The Prognostic Impact of High MEL1 Gene Expression in Pediatric Acute Myeloid Leukemia
Abstract
Background
Acute myeloid leukemia (AML) is a complex disease caused by mutations, epigenetic modifications, and deregulated expression of gen...

