PubMed Health⌕ Search

PubMed · 2436310

Function of nicotinic acetylcholine receptors.

Abstract

In summary, the AChRs on BC3H-1 cells behave in a fashion consistent with the major properties expected of muscle nicotinic AChRs. The results we have discussed here provide a quantitative description of some of the steps in receptor activation, and give a general picture of the functional states the AChR adopts. The results provide a framework for biochemical and ultrastructural studies of the AChR as well. One clear problem is that the receptor with an open channel is a very low probability state at equilibrium, at any concentration. A second problem is the postulated existence of closed channel states associated with brief-duration openings. It is not known what the probability is that a receptor is in such a state, so even "resting" receptors at low agonist concentrations may be in several functional states. At high agonist concentrations the receptor population goes through several transient states before reaching the final equilibrium state. At 11 degrees C, with a high concentration of ACh (greater than 0.3 mM) receptors with open channels appear rapidly (rate approximately 500 sec-1). Initially, there is a high probability that a receptor is both doubly liganded and has an open channel (0.9, Fig. 6). However, the predesensitized state develops rapidly (approximately 30 sec-1), and eventually the probability reaches about 0.4 that doubly liganded receptors are predesensitized. The short-lived desensitized state develops at a rate of about 3 sec-1. After a second or so, the distribution is about 0.3:0.2:0.5 for AChRs between receptors with open channels, predesensitized receptors, and short-lived desensitized receptors. Long-lived desensitization develops at a rate of about 0.5 sec-1, but at equilibrium the probability that a receptor is in this state is above 0.99. For AChRs on BC3H-1 cells, and most likely all AChRs, biochemical and structural studies need to be made in a narrow time window to catch an appreciable fraction of the receptors in any of the transient functional states described. Only time-resolved biochemical studies will provide the structural information necessary to work out the relationship between structure and function for the ACh receptor and give some substance to the ghostly kinetic states necessary to describe channel function.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J H Steinbach, S M Sine. 1987. Function of nicotinic acetylcholine receptors.. https://pubmed.ncbi.nlm.nih.gov/2436310/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Protocol for Detecting and Sequencing Chikungunya Virus from Field-Collected Mosquitoes.

Arboviral diseases represent a major public health challenge, especially in tropical regions where environmental conditions may favor the proliferation and spread of mosquito vectors. Thus, early and accurate detection of chikungunya virus (CHIKV) in mosquito populations can be a valuable tool for effective surveillance of circulating variants and for identifying new viral introductions. Given the challenges of detecting arboviruses in field-captured mosquitoes, we describe an integrated workflow for CHIKV molecular detection and whole-genome sequencing. This protocol includes mosquito homogenization using a bead-based mechanical disruptor, RNA extraction using TRIzol reagent with minor modifications, molecular screening using CHIKV-specific RT-qPCR, and whole-genome amplification followed by sequencing on Illumina platforms. Despite the protocol being optimized for individual mosquitoes, it results in high-quality RNA suitable for both entomological surveillance and genomic analysis. As this protocol allows recovery of complete CHIKV genomes from mosquito specimens, it can serve as a basis for genomic epidemiology studies, enabling monitoring of viral diversity and lineage dynamics, and facilitating early detection of emerging variants to support timely and targeted public health interventions in endemic and at-risk regions.

Animals↗

Genomic Profiling of Chromatin State Using CUT&Tag.

Alterations in chromatin state, mediated through histone modifications and the incorporation of histone variants, are fundamental to establishing transcriptional networks and cell identity. Recent advances in low-input epigenome profiling methods, such as CUT&Tag and CUT&RUN, have enabled the study of chromatin states from very limited starting materials. In this chapter, we describe procedures for generating CUT&Tag libraries to profile histone modifications and histone variants in early-developing zebrafish embryos.

Animals↗

Relaxin-2: Shaping the Proteomic Landscape of Skeletal Muscle Physiology, Glucose Trafficking, and Mitochondrial Function in Rat.

Relaxin-2 is a hormone with robust beneficial effects on the heart and blood vessels and potential as a therapy for cardiovascular (CV) disease. Considering the interorgan communication between skeletal muscle and heart, and the relation between muscle quality/composition and CV events, we hypothesize that relaxin-2 may regulate skeletal muscle physiology and metabolism. We aim to evaluate the impact of relaxin-2 on the proteome of skeletal muscle from healthy Sprague-Dawley rats. Animals were treated with 0.4 mg/kg/day of serelaxin (recombinant form of human relaxin-2) or vehicle (PBS) for 2 weeks employing subcutaneous osmotic minipumps. Skeletal muscle protein identification and quantification were performed by LC-MS/MS using a Data-Independent Acquisition (DIA)-Sequential Window Acquisition of All Theoretical Fragment Ion Spectra (SWATH) method. SWATH/MS quantitative analysis identified that relaxin-2 significantly decreased 95 proteins and significantly increased 32 proteins in rat skeletal muscle when compared to control rats. From these, 34 proteins were associated with muscle function, myogenesis, muscle differentiation and/or regeneration, 20 are mitochondrial proteins (six from the complexes of the electron transport chain), and 10 proteins participate in glucose metabolism. Qualitative data-dependent workflow analysis identified 35 proteins exclusive to the skeletal muscle of the relaxin-2-treated group: eight proteins related to processes of skeletal muscle function (size, ion homeostasis or organization of caveolae structures and cytoskeleton) and myogenesis, and two proteins involved in muscle differentiation. Our work highlighted for the first time the role of relaxin-2 in crucial processes of muscle physiology and energetic metabolism, which could influence several processes involved in myopathy and CV.

Animals↗