نتایج جستجو برای: serum myostatin

تعداد نتایج: 306461  

Journal: :Journal of cellular physiology 2002
Gina Nicholas Mark Thomas Brett Langley Wayne Somers Ketan Patel C Fred Kemp Mridula Sharma Ravi Kambadur

Myostatin, a secreted growth factor, is a key negative regulator of skeletal muscle growth. To identify modifiers of Myostatin function, we screened for Myostatin interacting proteins. Using a yeast two-hybrid screen, we identified Titin-cap (T-cap) protein as interacting with Myostatin. T-cap is a sarcomeric protein that binds to the N-terminal domain of Titin and is a substrate of the titin k...

Journal: :Biochimica et biophysica acta 2002
Arif M Kocabas Huseyin Kucuktas Rex A Dunham Zhanjiang Liu

Myostatin is a recently discovered gene that inhibits muscle growth. In the present study, we characterized the myostatin locus and its expression in channel catfish (Ictalurus punctatus). The genomic DNA and cDNA encoding the channel catfish myostatin were cloned and sequenced. The myostatin gene has three exons encoding a protein of 389 amino acids. Comparison of the genomic sequences with th...

2015
Jen Y. Lee Dede Lori Dominic J. Wells Paul R. Kemp

Myostatin is a TGFβ family ligand that reduces muscle mass. In cancer cells, TGFβ signalling is increased by the protein FHL1. Consequently, FHL1 may promote signalling by myostatin. We therefore tested the ability of FHL1 to regulate myostatin function. FHL1 increased the myostatin activity on a SMAD reporter and increased myostatin dependent myotube wasting. In mice, independent expression of...

Journal: :The Journal of biological chemistry 2007
Jinhong Zhu Yong Li Wei Shen Chunping Qiao Fabrisia Ambrosio Mitra Lavasani Masahiro Nozaki Maria F Branca Johnny Huard

Recent studies have shown that myostatin, first identified as a negative regulator of skeletal muscle growth, may also be involved in the formation of fibrosis within skeletal muscle. In this study, we further explored the potential role of myostatin in skeletal muscle fibrosis, as well as its interaction with both transforming growth factor-beta1 and decorin. We discovered that myostatin stimu...

Journal: :American journal of physiology. Regulatory, integrative and comparative physiology 2003
Buel D Rodgers Gregory M Weber Kevin M Kelley Michael A Levine

Myostatin negatively regulates muscle growth and development and has recently been characterized in several fishes. We measured fasting myostatin mRNA levels in adult tilapia skeletal muscle and in whole larvae. Although fasting reduced some growth indexes in adults, skeletal muscle myostatin mRNA levels were unaffected. By contrast, larval myostatin mRNA levels were sometimes elevated after a ...

2012
Olivier Monestier Caroline Brun Olivier Cocquempot Daniel Petit Véronique Blanquet

Growth and differentiation factor Associated Serum Protein (GASP) 1 and 2 are proteins known to be involved in the control of myostatin activity at least in vitro. Most deuterostome GASPs share a modular organization including WAP, follistatin/kazal, IGc2, two kunitz, and NTR domains. Based on an exon shuffling model, we performed independent phylogenetic analyses on these modules and assessed ...

Journal: :Genetics and molecular research : GMR 2011
E M Abbas A Takayanagi N Shimizu M Kato

Myostatin is a negative regulator of the growth and development of skeletal muscle mass. In fish, myostatin is expressed in several organs in addition to skeletal muscle. To understand the mechanisms regulating myostatin gene expression in the sea perch, Lateolabrax japonicus, we examined the methylation status of the myostatin gene promoter region in several tissues (liver, eye, kidney, brain,...

2017
Ewa Śliwicka Tomasz Cisoń Zbigniew Kasprzak Alicja Nowak Łucja Pilaczyńska-Szcześniak

Exposure to high-altitude hypoxia causes physiological and metabolic adaptive changes by disturbing homeostasis. Hypoxia-related changes in skeletal muscle affect the closely interconnected energy and regeneration processes. The balance between protein synthesis and degradation in the skeletal muscle is regulated by several molecules such as myostatin, cytokines, vitamin D, and irisin. This stu...

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