Differential gene expression profiles for detecting disease genes have been studied intensively in systems biology. However, it is known that various biological functions achieved by proteins follow from the ability of the protein to form complexes by physically binding to each other. In other words, the functional units are often protein complexes rather than individual proteins. Thus, we seek to replace the perspective of disease-related genes by disease-related complexes, exemplifying with data on 39 human solid tissue cancers and their original normal tissues. To obtain the differential abundance levels of protein complexes, we apply an optimization algorithm to genome-wide differential expression data. From the differential abundance o...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Protein-protein interactions (PPIs) have been widely studied to understand the biological processes ...
Background Cancer, the disease of intricateness, has remained beyond our complete perception so far...
Differential gene expression profiles for detecting disease genes have been studied intensively in s...
New insights to understand the dynamics of enormous modifications during cancer in comparison to hea...
Human protein complexes play crucial roles in various biological processes as the functional module....
AbstractMotivation: Protein complexes play important roles in cellular functions. Many protein compl...
Disease-causing variants in human genes usually lead to phenotypes specific to only a few tissues. H...
Breast cancer is a complex phenotype (or better yet, several complex phenotypes) characterized by th...
Abstract Deciphering the variations in the protein interactome is required to reach a systems-level ...
<div><p>Human protein complexes play crucial roles in various biological processes as the functional...
Abstract An increased surge of -omics data for the diseases such as cancer allows for deriving insig...
Background: Differential expression analysis of (individual) genes is often used to study their role...
Besides the pinpointing of individual disease-related genes, associating protein complexes to human ...
Background: Differential expression analysis of (individual) genes is often used to study their role...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Protein-protein interactions (PPIs) have been widely studied to understand the biological processes ...
Background Cancer, the disease of intricateness, has remained beyond our complete perception so far...
Differential gene expression profiles for detecting disease genes have been studied intensively in s...
New insights to understand the dynamics of enormous modifications during cancer in comparison to hea...
Human protein complexes play crucial roles in various biological processes as the functional module....
AbstractMotivation: Protein complexes play important roles in cellular functions. Many protein compl...
Disease-causing variants in human genes usually lead to phenotypes specific to only a few tissues. H...
Breast cancer is a complex phenotype (or better yet, several complex phenotypes) characterized by th...
Abstract Deciphering the variations in the protein interactome is required to reach a systems-level ...
<div><p>Human protein complexes play crucial roles in various biological processes as the functional...
Abstract An increased surge of -omics data for the diseases such as cancer allows for deriving insig...
Background: Differential expression analysis of (individual) genes is often used to study their role...
Besides the pinpointing of individual disease-related genes, associating protein complexes to human ...
Background: Differential expression analysis of (individual) genes is often used to study their role...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Protein-protein interactions (PPIs) have been widely studied to understand the biological processes ...
Background Cancer, the disease of intricateness, has remained beyond our complete perception so far...