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1.
J Mol Cell Cardiol ; 44(6): 983-991, 2008 Jun.
Article in English | MEDLINE | ID: mdl-18387630

ABSTRACT

Titin is a very large alternatively spliced protein that performs multiple functions in heart and skeletal muscles. A rat strain is described with an autosomal dominant mutation that alters the isoform expression of titin. While wild type animals go through a developmental program where the 3.0 MDa N2B becomes the major isoform expressed by two to three weeks after birth (approximately 85%), the appearance of the N2B is markedly delayed in heterozygotes and never reaches more than 50% of the titin in the adult. Homozygote mutants express a giant titin of the N2BA isoform type (3.9 MDa) that persists as the primary titin species through ages of more than one and a half years. The mutation does not affect the isoform switching of troponin T, a protein that is also alternatively spliced with developmental changes. The basis for the apparently greater size of the giant titin in homozygous mutants was not determined, but the additional length was not due to inclusion of sequence from larger numbers of PEVK exons or the Novex III exon. Passive tension measurements using isolated cardiomyocytes from homozygous mutants showed that cells could be stretched to sarcomere lengths greater than 4 mum without breakage. This novel rat model should be useful for exploring the potential role of titin in the Frank-Starling relationship and mechano-sensing/signaling mechanisms.


Subject(s)
Alternative Splicing/genetics , Exons/genetics , Muscle Proteins/biosynthesis , Mutation , Myocardium/metabolism , Myocytes, Cardiac/metabolism , Animals , Connectin , Heart/growth & development , Homozygote , Mechanotransduction, Cellular/genetics , Muscle Proteins/genetics , Muscle, Skeletal/metabolism , Protein Isoforms/biosynthesis , Protein Isoforms/genetics , Rats , Rats, Inbred F344 , Rats, Mutant Strains , Rats, Sprague-Dawley , Sarcomeres/genetics , Sarcomeres/metabolism , Troponin T/biosynthesis , Troponin T/genetics
2.
J Muscle Res Cell Motil ; 26(6-8): 325-32, 2005.
Article in English | MEDLINE | ID: mdl-16491431

ABSTRACT

Rat cardiac titin undergoes developmental changes in isoform expression during the period from late embryonic through the first 20-25 days of life. At least five size classes of titin isoforms have been identified using SDS agarose gel electrophoresis. The longest normal isoform is expressed in the embryonic stages, and it is progressively replaced with increasingly smaller versions. The isoform switching is consistent with changes in resting tension from lower values in one-day neonates to higher levels in adult myocytes. Considerable micro-heterogeneity in alternative splicing patterns also was found, particularly in the N2BA PEVK region of human, rat, and dog ventricle. A rat mutation has been identified in which the embryonic-neonatal titin isoform transitions are markedly delayed. These mutant animals may prove useful for examining the role of titin in stretch-activated signal transduction and in the Frank-Starling relationship.


Subject(s)
Fetal Heart/growth & development , Muscle Proteins/physiology , Mutation/genetics , Protein Kinases/physiology , Alternative Splicing/genetics , Animals , Animals, Newborn , Connectin , DNA, Complementary/genetics , Dogs , Exons/genetics , Fetal Heart/metabolism , Gene Expression Regulation, Developmental/genetics , Heart Atria/embryology , Heart Atria/metabolism , Heart Ventricles/embryology , Heart Ventricles/metabolism , Humans , Muscle Contraction/physiology , Muscle Proteins/genetics , Protein Isoforms/genetics , Protein Isoforms/physiology , Protein Kinases/genetics , Rats , Rats, Sprague-Dawley , Sarcomeres/physiology
3.
Mech Dev ; 121(11): 1301-12, 2004 Nov.
Article in English | MEDLINE | ID: mdl-15454261

ABSTRACT

Developmental changes in the alternative splicing patterns of titin were observed in rat cardiac muscle. Titin from 16-day fetal hearts consisted of a single 3710 kDa band on SDS agarose gels, and it disappeared by 10 days after birth. The major adult N2B isoform (2990 kDa) first appeared in 18-day fetal hearts and its proportion in the ventricle increased to approximately 85% from 20 days of age and older. Changes in three other intermediate-sized N2BA isoform bands also occurred during this same time period. The cDNA sequences of fetal cardiac, adult ventricle, and adult soleus were different in the PEVK and alternatively spliced middle Ig domain. Extensive heterogeneity in splice patterns was found in the N2BA PEVK region. The extra length of the fetal titin isoforms appeared to be due to both a greater number of middle Ig domains expressed plus the inclusion of more PEVK exons. Passive tension measurements on myocyte-sized fragments indicated a significantly lower tension in neonate versus adult ventricles at sarcomere lengths greater than 2.1 microm, consistent with the protein and cDNA sequence results. The time course of the titin isoform switching was similar to that occurring with myosin and troponin I during development.


Subject(s)
Exons/genetics , Heart/embryology , Heart/growth & development , Muscle Proteins/biosynthesis , Protein Kinases/biosynthesis , Alternative Splicing/genetics , Animals , Connectin , Heart Ventricles/immunology , Heart Ventricles/metabolism , Muscle Proteins/analysis , Muscle Proteins/genetics , Myocardial Contraction/physiology , Myocardium/metabolism , Myosin Heavy Chains/biosynthesis , Protein Isoforms/genetics , Protein Isoforms/metabolism , Protein Kinases/analysis , Protein Kinases/genetics , RNA, Messenger/analysis , RNA, Messenger/metabolism , Rats , Rats, Sprague-Dawley , Sarcomeres/physiology , Troponin/biosynthesis
4.
Electrophoresis ; 24(11): 1695-702, 2003 Jun.
Article in English | MEDLINE | ID: mdl-12783444

ABSTRACT

The electrophoretic separation of high-molecular-weight proteins (> 500 kDa) using polyacrylamide is difficult because gels with a large enough pore size for adequate protein mobility are mechanically unstable. A 1% vertical sodium dodecyl sulfate (SDS)-agarose gel electrophoresis (VAGE) system has been developed that allows titin (a protein with the largest known SDS subunit size of 3000-4000 kDa) to migrate over 10 cm in a approximately 13 cm resolving gel. Such migration gives clear and reproducible separation of titin isoforms. Proteins ranging in size from myosin heavy chain ( approximately 220 kDa) up to titin can be resolved on this gel system. Electroblotting of these very large proteins was nearly 100% efficient. This VAGE system has revealed two titin size variants in rabbit psoas muscle, two N2BA bands in rabbit cardiac muscle, and species differences between titins from rat and rabbit muscle. Agarose electrophoresis should be the method of choice for separation and blotting of proteins with very large subunit sizes.


Subject(s)
Electrophoresis, Agar Gel/methods , Muscles/chemistry , Proteins/isolation & purification , Animals , Astacoidea , Blotting, Western , Connectin , Dogs , Electrophoresis, Agar Gel/standards , Electrophoresis, Polyacrylamide Gel , Humans , Molecular Weight , Muscle Proteins/analysis , Muscle Proteins/isolation & purification , Protein Isoforms/isolation & purification , Protein Kinases/analysis , Protein Kinases/isolation & purification , Proteins/analysis , Rabbits , Rats
5.
Cardiovasc Res ; 59(1): 86-94, 2003 Jul 01.
Article in English | MEDLINE | ID: mdl-12829179

ABSTRACT

OBJECTIVE: Titin isoform expression patterns were examined to explain previously observed genetic differences in rat cardiac passive tension. METHODS: Rat ventricles from male spontaneously hypertensive (SHR) and Wistar-Kyoto (WKY) rats (normotensive) were used to analyze the titin isoform patterns. The hypertensive status was verified by blood pressure measurements and heart weight to body weight ratios. Gel electrophoresis and scanning densitometry were performed to determine ratios of myosin heavy chain and titin isoforms expressed. In situ hybridization using a cRNA probe specific for N2BA titin and a positive control in the N2B unique region was used to demonstrate tissue location of the titin message. RESULTS: Regression analysis of titin isoform ratios, myosin heavy chain isoform ratios, and heart weight to body weight ratios all suggest a smaller proportion of N2BA titin (longer isoform) was expressed in rat left ventricles with increased hypertrophy. In situ hybridization showed that the N2BA and N2B isoforms were co-expressed within most of the cardiomyocytes. Agarose gel electrophoresis demonstrated two different N2BA titin isoforms in all rat ventricles. CONCLUSIONS: Expression of less N2BA and more N2B titin in response to pressure overload will result in higher passive tension upon stretch at a given sarcomere length and thus affect cardiac performance.


Subject(s)
Hypertension/metabolism , Muscle Proteins/analysis , Myocardium/chemistry , Protein Isoforms/analysis , Protein Kinases/analysis , Animals , Blotting, Western/methods , Body Weight , Connectin , Densitometry , Electrophoresis, Agar Gel/methods , In Situ Hybridization/methods , Male , Myosin Heavy Chains/analysis , Organ Size , Rats , Rats, Inbred SHR , Rats, Inbred WKY , Ventricular Remodeling
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