Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theories discuss how they can capture cellular differentiation processes. One frequent motif in gene regulatory networks, especially in those circuits involved in cell differentiation, is autoregulation. In spite of this, the impact of autoregulation on Boolean network attractor landscape has not yet been extensively discussed in literature. In this paper we propose to model autoregulation as self-loops, and analyse how the number of attractors and their robustness may change once they are introduced in a well-known and widely used Boolean networks model, namely random Boolean networks. Results show that self-loops provide an evolutionary advantage...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
none3noBoolean networks are a notable model of gene regulatory networks and, particularly, prominent...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
none3noThe process of cell differentiation manifests properties such as non-uniform robustness and a...
none3noThe process of cell differentiation manifests properties such as non-uniform robustness and a...
The process of cell differentiation manifests properties such as non-uniform robustness and asymmetr...
The process of cell differentiation manifests properties such as non-uniform robustness and asymmetr...
The process of cell differentiation manifests properties such as non-uniform robustness and asymmetr...
none3noThe process of cell differentiation manifests properties such as non-uniform robustness and a...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
none3noBoolean networks are a notable model of gene regulatory networks and, particularly, prominent...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
Boolean networks are a notable model of gene regulatory networks and, particularly, prominent theori...
none3noThe process of cell differentiation manifests properties such as non-uniform robustness and a...
none3noThe process of cell differentiation manifests properties such as non-uniform robustness and a...
The process of cell differentiation manifests properties such as non-uniform robustness and asymmetr...
The process of cell differentiation manifests properties such as non-uniform robustness and asymmetr...
The process of cell differentiation manifests properties such as non-uniform robustness and asymmetr...
none3noThe process of cell differentiation manifests properties such as non-uniform robustness and a...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...
Random Boolean Networks (RBNs) are a popular and successful model of gene regulatory networks, espec...