Cysteine and glycine-rich protein 3 also known as cardiac LIM protein (CLP) or muscle LIM protein (MLP) is a
protein that in humans is encoded by the CSRP3
gene.
CSRP3 IS a small 194 amino acid protein, which is specifically expressed in
skeletal
A skeleton is the structural frame that supports the body of an animal. There are several types of skeletons, including the exoskeleton, which is the stable outer shell of an organism, the endoskeleton, which forms the support structure inside ...
and
cardiac muscle.
In rodents, CSRP3 has also been found to be expressed in
neurons.
Gene
The CSRP3 gene was discovered in rat in 1994.
[ In humans it was mapped to chromosome 11p15.1,] where it spans a 20kb genomic region, organized in 6 exons
An exon is any part of a gene that will form a part of the final mature RNA produced by that gene after introns have been removed by RNA splicing. The term ''exon'' refers to both the DNA sequence within a gene and to the corresponding sequence ...
. The full length transcript is 0.8kb, while a splice variant, originating from the alternative splicing
Alternative splicing, or alternative RNA splicing, or differential splicing, is an alternative splicing process during gene expression that allows a single gene to code for multiple proteins. In this process, particular exons of a gene may be ...
of exons 3 and 4, was recently identified and designated MLP-b.
Structure
MLP contains two LIM domains (LIM1 and LIM2), each being surrounded by glycine-rich regions, and the two separated by more than 50 residues. LIM domains offer a remarkable ability for protein-protein interactions. Furthermore, MLP carries a nuclear localization signal at amino acid positions 64-69 MLP can be acetylated/deacetylated at the position 69 lysine residue (K69), by acetyltransferase
Acetyltransferase (or transacetylase) is a type of transferase enzyme that transfers an acetyl group.
Examples include:
* Histone acetyltransferases including CBP histone acetyltransferase
* Choline acetyltransferase
* Chloramphenicol acetyltransf ...
(PCAF) and histone deacetylase 4 ( HDAC4), respectively. In myocytes, MLP has the ability to oligomerize, forming dimers, trimers and tetramers, an attribute that impacts its interactions, localization and function.
Protein interactions and localization
MLP has been identified to bind to an increasing list of proteins, exhibiting variable subcellular localization and diverse functional properties. In particular, MLP interacts with proteins at the:
# Z-line, including telethonin
Telethonin, also known as Tcap, is a protein that in humans is encoded by the ''TCAP'' gene. Telethonin is expressed in cardiac and skeletal muscle at Z-discs and functions to regulate sarcomere assembly, T-tubule function and apoptosis. Telet ...
(T-cap), alpha- actinin ( ACTN), cofilin-2 ( CFL2), calcineurin, HDAC4, MLP-b as well as to MLP itself;
# costameres, where it binds to zyxin, integrin linked kinase ( ILK) and beta1- spectrin;
# intercalated discs, where it associates with the nebulin-related anchoring protein ( NRAP);
# nucleus, where it binds to the transcription factors MyoD, myogenin and MRF4.
M-line as well as plasma membrane
The cell membrane (also known as the plasma membrane (PM) or cytoplasmic membrane, and historically referred to as the plasmalemma) is a biological membrane that separates and protects the interior of all cells from the outside environment (t ...
localization of MLP has also been observed, however, the protein associations mediating this subcellular distribution are currently unknown.
These diverse localization patterns and binding partners of MLP suggest a multitude of roles relating both to the striated myocyte cytoskeleton and the nucleus. The role of MLP in each of these two cellular compartments appears to be dynamic, with studies demonstrating nucleocytoplasmic shuttling, driven by its nuclear localization signal, over time and under different conditions.[
]
Function
In the nucleus, MLP acts as a positive regulator of myogenesis and promotes myogenic differentiation.[ Overexpression of MLP enhances myotube differentiation, an effect attributed to the direct association of MLP with muscle specific transcription factors such as MyoD, myogenin and MRF4 and consequently the transcriptional control of fundamental muscle-specific genes.][
In the cytoplasm, MLP is an important scaffold protein, implicated in various cytoskeletal macromolecular complexes, at the sarcomeric Z-line, the costameres, and the microfilaments.][ At the Z-line, MLP interacts with different Z-line components ] and acts as a scaffold protein promoting the assembly of macromolecular complexes along sarcomeres and actin-based cytoskeleton Moreover, since the Z-line acts as a stretch sensor, MLP is believed to be involved in mechano-signaling processes. Indeed, cardiomyocytes from MLP transgenic or knock-out mouse
A knockout mouse, or knock-out mouse, is a genetically modified mouse (''Mus musculus'') in which researchers have inactivated, or "knocked out", an existing gene by replacing it or disrupting it with an artificial piece of DNA. They are important ...
exhibit defective intrinsic stretch responses, due to selective loss of passive stretch sensing.[
At the costameres, another region implicated in force transmission, MLP is thought to be contributing in mechanosensing through its interactions with β1 spectrin and zyxin. However, the precise role of MLP at the costameres has not been extensively investigated yet.
At the microfilaments, MLP is implicated in ]actin remodeling Actin remodeling is the biochemical process that allows for the dynamic alterations of cellular organization. The remodeling of actin filaments occurs in a cyclic pattern on cell surfaces and exists as a fundamental aspect to cellular life. During ...
(or actin dynamics) through its interaction with cofilin-2 ( CFL2). Binding of MLP to CFL2 enhances the CFL2-dependent F-actin depolymerization,[ with a recent study demonstrating that MLP can act directly on actin cytoskeleton dynamics through direct binding that stabilizes and crosslinks ]actin filaments
Microfilaments, also called actin filaments, are protein filaments in the cytoplasm of eukaryotic cells that form part of the cytoskeleton. They are primarily composed of polymers of actin, but are modified by and interact with numerous other pr ...
into bundles.
Additionally, MLP is indirectly related to calcium homeostasis and energy metabolism. Specifically, acetylation of MLP increases the calcium sensitivity of myofilaments and regulates contractility,[ while the absence of MLP causes alterations in calcium signaling (intracellular calcium handling) with defects in excitation-contraction coupling.] Furthermore, lack of MLP leads to local loss of mitochondria
A mitochondrion (; ) is an organelle found in the Cell (biology), cells of most Eukaryotes, such as animals, plants and Fungus, fungi. Mitochondria have a double lipid bilayer, membrane structure and use aerobic respiration to generate adenosi ...
and energy deficiency.
Animal studies
In rodents, MLP is transiently expressed in amacrine cells of the retina during postnatal development. In the adult nervous system it is expressed upon axonal injury, where it plays an important role during regenerative processes, functioning as an actin cross-linker, thereby facilitating filopodia formation and increasing growth cone motility.
Clinical significance
MLP is directly associated with striated muscle diseases. Mutations
In biology, a mutation is an alteration in the nucleic acid sequence of the genome of an organism, virus, or extrachromosomal DNA. Viral genomes contain either DNA or RNA. Mutations result from errors during DNA or viral replication, mi ...
in the CSRP3 gene have been detected in patients with dilated cardiomyopathy (DCM) .g. G72R and K69R and hypertrophic cardiomyopathy
Hypertrophic cardiomyopathy (HCM, or HOCM when obstructive) is a condition in which the heart becomes thickened without an obvious cause. The parts of the heart most commonly affected are the interventricular septum and the ventricles. This r ...
(HCM) .g. L44P, S46R, S54R/E55G, C58G, R64C, Y66C, Q91L, K42/fs165 while the most frequent MLP mutation, W4R, has been found in both of these patient populations. Biochemical and functional studies have been performed for some of these mutant proteins, and reveal aberrant localization and interaction patterns, leading to impaired molecular and cellular functions. For example, the W4R mutation abolishes the MLP/T-cap interaction, leading to mislocalization of T-cap, Z-line instability and severe sarcomeric structural defects.[ The C58G mutation causes reduced protein stability due to enhanced ubiquitin-dependent ]proteasome
Proteasomes are protein complexes which degrade unneeded or damaged proteins by proteolysis, a chemical reaction that breaks peptide bonds. Enzymes that help such reactions are called proteases.
Proteasomes are part of a major mechanism by w ...
degradation[ while the K69L mutation, which is within the predicted nuclear localization signal of MLP, abolishes the MLP/α-actinin interaction and causes altered subcellular distribution of the mutant protein, showing predominant perinuclear localization.][
Alterations in the protein expression levels of MLP, its oligomerization or splicing have also been described in human cardiac and skeletal muscle diseases: both MLP protein levels and oligomerization are down-regulated in human ]heart failure
Heart failure (HF), also known as congestive heart failure (CHF), is a syndrome, a group of signs and symptoms caused by an impairment of the heart's blood pumping function. Symptoms typically include shortness of breath, excessive fatigue, a ...
,[ while MLP levels are significantly changed in different skeletal myopathies, including facioscapulohumeral muscular dystrophy, nemaline myopathy and limb girdle muscular dystrophy type 2B.] Moreover, significant changes in MLP-b protein expression levels, as well as deregulation of the MLP:MLP-b ratio have been detected in limb girdle muscular dystrophy
Limb may refer to:
Science and technology
*Limb (anatomy), an appendage of a human or animal
*Limb, a large or main branch of a tree
*Limb, in astronomy, the curved edge of the apparent disk of a celestial body, e.g. lunar limb
*Limb, in botany, ...
type 2A, Duchenne muscular dystrophy and dermatomyositis patients.[
]
Animal models
Animal models are providing insight into MLP's function in striated muscle. Ablation of Mlp (MLP-/-) in mice affects all striated muscles, although the cardiac phenotype is more severe, leading to alterations in cardiac pressure and volume, aberrant contractility, development of dilated cardiomyopathy with hypertrophy and progressive heart failure. At the histological level there is dramatic disruption of the cardiomyocyte cytoarchitecture at multiple levels, and pronounced fibrosis. Other cellular changes included alterations in intracellular calcium handling, local loss of mitochondria and energy deficiency.[
Crossing MLP-/- mice with phospholamban (PLN) -/-, or ]β2-adrenergic receptor
The adrenergic receptors or adrenoceptors are a class of G protein-coupled receptors that are targets of many catecholamines like norepinephrine (noradrenaline) and epinephrine (adrenaline) produced by the body, but also many medications like beta ...
(β2-AR) -/-, or angiotensin II type 1a receptor (AT1a) -/-, or β-adrenergic receptor kinase 1 inhibitor (bARK1
G-protein-coupled receptor kinase 2 (GRK2) is an enzyme that in humans is encoded by the ''ADRBK1'' gene. GRK2 was initially called Beta-adrenergic receptor kinase (βARK or βARK1), and is a member of the G protein-coupled receptor kinase sub ...
) -/- mice, as well as overexpressing calcineurin rescued their cardiac function, through a series of only partly understood molecular mechanisms. Conversely crossing MLP-/- mice with β1-adrenergic receptor (β1-AR) -/- mice was lethal, while crossing MLP-/- mice with calcineurin -/- mice, enhanced fibrosis and cardiomyopathy
Cardiomyopathy is a group of diseases that affect the heart muscle. Early on there may be few or no symptoms. As the disease worsens, shortness of breath, feeling tired, and swelling of the legs may occur, due to the onset of heart failure. A ...
.[ A gene knockin mouse model harboring the human MLP-W4R mutation developed HCM and heart failure, while ultrastructural analysis of its cardiac tissue revealed ]myocardial disarray
Myocardial disarray, also known as myocyte disarray, is a term to describe the loss of the normal parallel alignment of myocytes (the muscle cells of the heart). Instead, the myocytes usually form circles around foci of connective tissue. Myoca ...
and significant fibrosis, increased nuclear localization of MLP concomitantly with reduced sarcomeric Z-line distribution.[
Alterations in MLP nucleocytoplasmic shuttling, which are possibly modulated by changes in its oligomerization status, have also been implicated in hypertrophy and heart failure, independently of mutations.][
Studies in Drosophila revealed that genetic ablation of Mlp84B, the Drosophila homolog of MLP, was associated with pupal lethality and impaired muscle function.][ Mechanical studies of Mlp84B-null flight muscles indicate that loss of Mlp84B results in decreased muscle stiffness and power generation.] Cardiac-specific ablation of Mlp84B caused decreased lifespan, impaired diastolic function and disturbances in cardiac rhythm.
Overall, these animal models have provided critical evidence on the functional significance of MLP in striated muscle physiology and pathophysiology.
Notes
References
External links
GeneReviews/NIH/NCBI/UW entry on Familial Hypertrophic Cardiomyopathy Overview
*
*
* {{PDBe-KB2, P50461, Cysteine and glycine-rich protein 3