Intramembrane proteases (IMPs) reside inside lipid bilayers and perform peptide hydrolysis in transmembrane or juxtamembrane regions of their substrates. Many IMPs are involved in crucial regulatory pathways and human diseases, including Alzheimer's disease, Parkinson's disease, and diabetes. In the past, chemical tools have been instrumental in the study of soluble proteases, enabling biochemical and biomedical research in complex environments such as tissue lysates or living cells. However, IMPs place special challenges on probe design and applications, and progress has been much slower than for soluble proteases. In this review, we will give an overview of the available chemical tools for IMPs, including activity-based probes, affinity-b...
Hydrolase enzymes, including proteases, are encoded by 2–3% of the genes in the human genome and 14%...
AbstractIntramembrane-cleaving proteases are members of a novel type of enzyme that hydrolyse substr...
Proteases are crucial components of life. They regulate numerous biological pathways, such blood coa...
Intramembrane proteases (IMPs) reside inside lipid bilayers and perform peptide hydrolysis in transm...
Intramembrane proteases (IMPs) are localized within lipid bilayers of membranes-either the cell memb...
Proteases are considered attractive drug targets. Various drugs targeting classical, soluble proteas...
AbstractThe turn of the millennium coincided with the branding of a fundamentally different class of...
Proteases carry out a wide variety of physiological functions. This review presents a brief history ...
Intramembrane proteases are membrane enzymes whose active site is buried below the surface of the bi...
Rhomboids are ubiquitous intramembrane serine proteases that cleave transmembrane substrates. Their ...
Item does not contain fulltextProteases are involved in a wide variety of biologically and medically...
Over the years, the view on proteases as relatively non-specific protein degradation enzymes, mainly...
Intramembrane proteases hydrolyze peptide bonds within the membrane as a signaling paradigm universa...
Regulated intramembrane proteolysis is an interesting process involved in a multitude of cellular pa...
Intramembrane proteases have the unusual property of cleaving peptide bonds within the lipid bilayer...
Hydrolase enzymes, including proteases, are encoded by 2–3% of the genes in the human genome and 14%...
AbstractIntramembrane-cleaving proteases are members of a novel type of enzyme that hydrolyse substr...
Proteases are crucial components of life. They regulate numerous biological pathways, such blood coa...
Intramembrane proteases (IMPs) reside inside lipid bilayers and perform peptide hydrolysis in transm...
Intramembrane proteases (IMPs) are localized within lipid bilayers of membranes-either the cell memb...
Proteases are considered attractive drug targets. Various drugs targeting classical, soluble proteas...
AbstractThe turn of the millennium coincided with the branding of a fundamentally different class of...
Proteases carry out a wide variety of physiological functions. This review presents a brief history ...
Intramembrane proteases are membrane enzymes whose active site is buried below the surface of the bi...
Rhomboids are ubiquitous intramembrane serine proteases that cleave transmembrane substrates. Their ...
Item does not contain fulltextProteases are involved in a wide variety of biologically and medically...
Over the years, the view on proteases as relatively non-specific protein degradation enzymes, mainly...
Intramembrane proteases hydrolyze peptide bonds within the membrane as a signaling paradigm universa...
Regulated intramembrane proteolysis is an interesting process involved in a multitude of cellular pa...
Intramembrane proteases have the unusual property of cleaving peptide bonds within the lipid bilayer...
Hydrolase enzymes, including proteases, are encoded by 2–3% of the genes in the human genome and 14%...
AbstractIntramembrane-cleaving proteases are members of a novel type of enzyme that hydrolyse substr...
Proteases are crucial components of life. They regulate numerous biological pathways, such blood coa...