Javascript must be enabled to continue!
Updates on protein-prenylation and associated inherited retinopathies
View through CrossRef
Membrane-anchored proteins play critical roles in cell signaling, cellular architecture, and membrane biology. Hydrophilic proteins are post-translationally modified by a diverse range of lipid molecules such as phospholipids, glycosylphosphatidylinositol, and isoprenes, which allows their partition and anchorage to the cell membrane. In this review article, we discuss the biochemical basis of isoprenoid synthesis, the mechanisms of isoprene conjugation to proteins, and the functions of prenylated proteins in the neural retina. Recent discovery of novel prenyltransferases, prenylated protein chaperones, non-canonical prenylation-target motifs, and reversible prenylation is expected to increase the number of inherited systemic and blinding diseases with aberrant protein prenylation. Recent important investigations have also demonstrated the role of several unexpected regulators (such as protein charge, sequence/protein-chaperone interaction, light exposure history) in the photoreceptor trafficking of prenylated proteins. Technical advances in the investigation of the prenylated proteome and its application in vision research are discussed. Clinical updates and technical insights into known and putative prenylation-associated retinopathies are provided herein. Characterization of non-canonical prenylation mechanisms in the retina and retina-specific prenylated proteome is fundamental to the understanding of the pathogenesis of protein prenylation-associated inherited blinding disorders.
Title: Updates on protein-prenylation and associated inherited retinopathies
Description:
Membrane-anchored proteins play critical roles in cell signaling, cellular architecture, and membrane biology.
Hydrophilic proteins are post-translationally modified by a diverse range of lipid molecules such as phospholipids, glycosylphosphatidylinositol, and isoprenes, which allows their partition and anchorage to the cell membrane.
In this review article, we discuss the biochemical basis of isoprenoid synthesis, the mechanisms of isoprene conjugation to proteins, and the functions of prenylated proteins in the neural retina.
Recent discovery of novel prenyltransferases, prenylated protein chaperones, non-canonical prenylation-target motifs, and reversible prenylation is expected to increase the number of inherited systemic and blinding diseases with aberrant protein prenylation.
Recent important investigations have also demonstrated the role of several unexpected regulators (such as protein charge, sequence/protein-chaperone interaction, light exposure history) in the photoreceptor trafficking of prenylated proteins.
Technical advances in the investigation of the prenylated proteome and its application in vision research are discussed.
Clinical updates and technical insights into known and putative prenylation-associated retinopathies are provided herein.
Characterization of non-canonical prenylation mechanisms in the retina and retina-specific prenylated proteome is fundamental to the understanding of the pathogenesis of protein prenylation-associated inherited blinding disorders.
Related Results
Abstract 1341: Inhibition of cellular protein prenylation enhances persistence and efficacy of CAR-T therapy.
Abstract 1341: Inhibition of cellular protein prenylation enhances persistence and efficacy of CAR-T therapy.
Abstract
Significance:
Chimeric antigen receptor (CAR) T cell therapy has demonstrated great success in treating patients...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Protein prenylation in eukaryotic microorganisms: genetics, biology and biochemistry
Protein prenylation in eukaryotic microorganisms: genetics, biology and biochemistry
SummaryModrfication of proteins at Cāterminal cysteine residue(s) by the isoprenoids farnesyl (C15) and geranylgeranyl (C20) is essential for the biological function of a number of...
Prenylation of axonally translated proteins controls NGF-dependent axon growth
Prenylation of axonally translated proteins controls NGF-dependent axon growth
Summary
Compartmentalized signaling is critical for cellular organization and specificity of functional outcomes in neurons. Here, we report that post-translational...
Endothelial Protein C Receptor
Endothelial Protein C Receptor
IntroductionThe protein C anticoagulant pathway plays a critical role in the negative regulation of the blood clotting response. The pathway is triggered by thrombin, which allows ...
Protein expression of prenyltransferase subunits in postmortem schizophrenia dorsolateral prefrontal cortex
Protein expression of prenyltransferase subunits in postmortem schizophrenia dorsolateral prefrontal cortex
Abstract
The pathophysiology of schizophrenia includes altered neurotransmission, dysregulated intracellular signaling pathway activity, and ...
Protein expression of prenyltransferase subunits in postmortem schizophrenia dorsolateral prefrontal cortex
Protein expression of prenyltransferase subunits in postmortem schizophrenia dorsolateral prefrontal cortex
Abstract
The pathophysiology of schizophrenia includes altered neurotransmission, dysregulated intracellular signaling pathway activity, and abnormal dendritic morp...
Incidence of Venous Thromboembolism in Patients with Different Classes of Obesity in Comparison to Inherited Thrombophilias
Incidence of Venous Thromboembolism in Patients with Different Classes of Obesity in Comparison to Inherited Thrombophilias
Introduction: Obesity is a significant risk factor for venous thromboembolism (VTE). It is linked to physical inactivity, increased intra-abdominal pressure, chronic inflammation, ...

