Skip to main content
You're viewing the free public version. Create a free account for full research and member tools. Join free
Research Abstract

Protein variants of skeletal muscle regulatory myosin light chain isoforms: prevalence in mammals, generation and transitions during muscle remodelling.

González B, Negredo P, Hernando R, Manso R
Pflugers Archiv : European journal of physiology
Jan 1, 2002
Sources
2 min read
0:00 / 0:00
0:00 / 0:00

Sign in to access this feature

Create a free account or sign in to use AI summaries, listen to articles, download PDFs, and save to your library.

1 view
Share:

Abstract

The regulatory myosin light chains (rMLCs) of mammalian skeletal muscle display protein diversity arising from the existence of different isotypes and protein phosphorylation. Two-dimensional electrophoresis and immunoblotting allowed us to identify three variants of the slow and fast rMLC isoforms (designated LC2s, LC2s1, LC2s2, and LC2f, LC2f1, LC2f2, respectively, from less to more acidic). This study aimed to characterize their prevalence among different species and muscle types, the mechanism(s) of their generation and their transitions during fast-to-slow fibre type switching. In vitro dephosphorylation and back-phosphorylation experiments and mass spectrometric analysis of tryptic digests indicate that: (1) both acidic variants, within each isoform, contain a phosphorylated peptide, (2) all variants of each isoform share identical tryptic peptides, (3) only one phosphopeptide is present per isoform, and (4) the intermediate-acidic variants of both isoforms contain the same peptide in their phosphorylated and non-phosphorylated forms. The data indicate that the triad pattern of variants results from two partially superimposed doublets of phosphorylated/non-phosphorylated pairs. Continuous, low-frequency electrical stimulation of rat extensor digitorum longus muscle changed the relative proportions of variants within each isoform towards those of the soleus. It is suggested that the doublets of phosphorylated/non-phosphorylated pairs are involved in rMLC exchange during sarcomere remodelling.

Affiliation

Department of Molecular Biology, Centre of Molecular Biology "Severo Ochoa" (CSIC-Autonomous University of Madrid), E-28049 Madrid, Spain.

Comments

Sign in or create a free account to join the conversation.

Sign in to comment

Be the first to comment.

More Research Abstracts

View All Abstracts

Trusted By Professionals and Teams:

The National Health Federation
Stand For Health Freedom
Global Healing Institute
Global Wellness Forum
MAHA Action
Myers Detox
Natural News
Mercola.com

Unlock Evidence-Based Health Research

Join 500,000+ members accessing 10,000+ natural health topics.

Subscribe to our informative Newsletter & Receive

Cancer Fighting Foods Ebook

Our newsletter serves 500,000 with essential news, research & healthy tips, daily.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of GreenMedInfo or its staff.