BACKGROUND: Magnesium research is increasing in molecular medicine due to the relevance of this ion in several important biological processes and associated molecular pathogeneses. It is still difficult to predict from the protein covalent structure whether a human chain is or not involved in magnesium binding. This is mainly due to little information on the structural characteristics of magnesium binding sites in proteins and protein complexes. Magnesium binding features, differently from those of other divalent cations such as calcium and zinc, are elusive. Here we address a question that is relevant in protein annotation: how many human proteins can bind Mg2+? Our analysis is performed taking advantage of the recently implemented Bologna...
[[abstract]]Among all naturally found metalloproteins, those containing Mg(II), Ca(II), and Zn(II) a...
Abstract. We present an application of machine learning algorithms for the identification of metallo...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
BACKGROUND: Magnesium research is increasing in molecular medicine due to the relevance of this ion ...
Background: Magnesium research is increasing in molecular medicine due to the relevance of this ion ...
Contains fulltext : 70519.pdf (publisher's version ) (Open Access)The past decade ...
Magnesium (Mg(2+)) is an essential ion to the human body, playing an instrumental role in supporting...
Systems biology analysis of over 700 magnesium-dependent proteins in human proteome shown that these...
[[abstract]]Density functional theory and continuum dielectric methods have been employed to evaluat...
Progress in the selective binding and detection of magnesium ions has been slower than other biologi...
Magnesium, the second and fourth most abundant cation in the intracellular compartment and whole bod...
Magnesium has important structural, catalytic and signaling roles in cells, yet few tools exist to i...
Magnesium has important structural, catalytic and signaling roles in cells, yet few tools exist to i...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Magnesium has important structural, catalytic and signaling roles in cells, yet few tools exist to i...
[[abstract]]Among all naturally found metalloproteins, those containing Mg(II), Ca(II), and Zn(II) a...
Abstract. We present an application of machine learning algorithms for the identification of metallo...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
BACKGROUND: Magnesium research is increasing in molecular medicine due to the relevance of this ion ...
Background: Magnesium research is increasing in molecular medicine due to the relevance of this ion ...
Contains fulltext : 70519.pdf (publisher's version ) (Open Access)The past decade ...
Magnesium (Mg(2+)) is an essential ion to the human body, playing an instrumental role in supporting...
Systems biology analysis of over 700 magnesium-dependent proteins in human proteome shown that these...
[[abstract]]Density functional theory and continuum dielectric methods have been employed to evaluat...
Progress in the selective binding and detection of magnesium ions has been slower than other biologi...
Magnesium, the second and fourth most abundant cation in the intracellular compartment and whole bod...
Magnesium has important structural, catalytic and signaling roles in cells, yet few tools exist to i...
Magnesium has important structural, catalytic and signaling roles in cells, yet few tools exist to i...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Magnesium has important structural, catalytic and signaling roles in cells, yet few tools exist to i...
[[abstract]]Among all naturally found metalloproteins, those containing Mg(II), Ca(II), and Zn(II) a...
Abstract. We present an application of machine learning algorithms for the identification of metallo...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...