Javascript must be enabled to continue!
Glycosylphosphatidylinositol-anchored proteins as non-DNA matter of inheritance: from molecular to cell to philosophical biology
View through CrossRef
Glycosylphosphatidylinositol-anchored proteins (GPI-APs) are cell surface proteins attached to the outer leaflet of eukaryotic plasma membranes (PMs) by a covalently attached GPI. Some GPI-APs may be released extracellularly in response to certain stimuli, such as a high-fat diet, leading to their presence in interstitial spaces or the bloodstream, with their GPI anchor remaining intact. This is accomplished by incorporation of GPI fatty acids into the outer phospholipid monolayer of extracellular vesicles (EVs) or alternatively, together with (lyso)phospholipids and cholesterol into micelle-like complexes. The transfer of released full-length GPI-APs via micelle-like complexes or EVs from donor to acceptor cells, either within the same or distant tissue, is known to have functional consequences, such as the stimulation of glycogen and lipid synthesis. This article explores the possibility that the intercellular transfer of GPI-APs via EVs or micelle-like complexes mediates a form of biological inheritance of non-DNA matter. This novel paradigm may be summarized as follows: (i) donor cells not only transfer DNA to acceptor cells but also GPI-APs, transmembrane proteins, and cytoskeletal elements, which constitute the so-called membrane environment landscapes (MELs), via EVs or micelle-like complexes. (ii) The transferred MLs, such as protuberances and invaginations, are replicated by self-organization and amenable to topological changes in response to environmental factors. (iii) Transfer of MELs induces novel phenotypes in acceptor cells. (iv) This transfer of non-DNA matter is understood as epigenetic mechanism for phenotypic plasticity and the inheritance of acquired traits. (v) The reasons for the missing consideration of non-DNA matter in heredity research should become the subject of future studies in the philosophy of biology, in general, and science and technology studies, in particular.
Title: Glycosylphosphatidylinositol-anchored proteins as non-DNA matter of inheritance: from molecular to cell to philosophical biology
Description:
Glycosylphosphatidylinositol-anchored proteins (GPI-APs) are cell surface proteins attached to the outer leaflet of eukaryotic plasma membranes (PMs) by a covalently attached GPI.
Some GPI-APs may be released extracellularly in response to certain stimuli, such as a high-fat diet, leading to their presence in interstitial spaces or the bloodstream, with their GPI anchor remaining intact.
This is accomplished by incorporation of GPI fatty acids into the outer phospholipid monolayer of extracellular vesicles (EVs) or alternatively, together with (lyso)phospholipids and cholesterol into micelle-like complexes.
The transfer of released full-length GPI-APs via micelle-like complexes or EVs from donor to acceptor cells, either within the same or distant tissue, is known to have functional consequences, such as the stimulation of glycogen and lipid synthesis.
This article explores the possibility that the intercellular transfer of GPI-APs via EVs or micelle-like complexes mediates a form of biological inheritance of non-DNA matter.
This novel paradigm may be summarized as follows: (i) donor cells not only transfer DNA to acceptor cells but also GPI-APs, transmembrane proteins, and cytoskeletal elements, which constitute the so-called membrane environment landscapes (MELs), via EVs or micelle-like complexes.
(ii) The transferred MLs, such as protuberances and invaginations, are replicated by self-organization and amenable to topological changes in response to environmental factors.
(iii) Transfer of MELs induces novel phenotypes in acceptor cells.
(iv) This transfer of non-DNA matter is understood as epigenetic mechanism for phenotypic plasticity and the inheritance of acquired traits.
(v) The reasons for the missing consideration of non-DNA matter in heredity research should become the subject of future studies in the philosophy of biology, in general, and science and technology studies, in particular.
Related Results
Structural Determinants and Biochemical Characterization of LORELEI as a GPI-Anchored Protein
Structural Determinants and Biochemical Characterization of LORELEI as a GPI-Anchored Protein
Abstract
Glycosylphosphatidylinositol-anchored proteins play critical roles in plant development, reproduction, and environmental responses. Howe...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Abstract
Background: Age-associated epigenetic alteration is the underlying cause of DNA damage in aging cells. Two types of youth-associated DNA-protection epigenetic mark...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Introduction: The United States currently faces two opioid crises, an evolved crisis currently manifesting as widespread abuse of illicit opioids, and a crisis in pain management l...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Echinococcus granulosus in Environmental Samples: A Cross-Sectional Molecular Study
Echinococcus granulosus in Environmental Samples: A Cross-Sectional Molecular Study
Abstract
Introduction
Echinococcosis, caused by tapeworms of the Echinococcus genus, remains a significant zoonotic disease globally. The disease is particularly prevalent in areas...
Biophysical studies of RNA:DNA:DNA triplexes and characterization of riboswitches in cell-free transcription-translation systems
Biophysical studies of RNA:DNA:DNA triplexes and characterization of riboswitches in cell-free transcription-translation systems
RNA research is very important since RNA molecules are involved in various gene regulatory mechanisms as well as pathways of cell physiology and disease development.1 RNAs have evo...

