Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Muscle developmental defects in heterogeneous nuclear Ribonucleoprotein A1 knockout mice

View through CrossRef
Heterogeneous ribonucleoprotein A1 (hnRNP A1) is crucial for regulating alternative splicing. Its integrated function within an organism has not, however, been identified. We generated hnRNP A1 knockout mice to study the role of hnRNP A1 in vivo . The knockout mice, hnRNP A1 −/− , showed embryonic lethality because of muscle developmental defects. The blood pressure and heart rate of the heterozygous mice were higher than those of the wild-type mice, indicating heart function defects. We performed mouse exon arrays to study the muscle development mechanism. The processes regulated by hnRNP A1 included cell adhesion and muscle contraction. The expression levels of muscle development-related genes in hnRNP A1 +/− mice were significantly different from those in wild-type mice, as detected using qRT-PCR. We further confirmed the alternative splicing patterns of muscle development-related genes including mef2c , lrrfip1 , usp28 and abcc9 . Alternative mRNA isoforms of these genes were increased in hnRNP A1 +/− mice compared with wild-type mice. Furthermore, we revealed that the functionally similar hnRNP A2/B1 did not compensate for the expression of hnRNP A1 in organisms. In summary, our study demonstrated that hnRNP A1 plays a critical and irreplaceable role in embryonic muscle development by regulating the expression and alternative splicing of muscle-related genes.
Title: Muscle developmental defects in heterogeneous nuclear Ribonucleoprotein A1 knockout mice
Description:
Heterogeneous ribonucleoprotein A1 (hnRNP A1) is crucial for regulating alternative splicing.
Its integrated function within an organism has not, however, been identified.
We generated hnRNP A1 knockout mice to study the role of hnRNP A1 in vivo .
The knockout mice, hnRNP A1 −/− , showed embryonic lethality because of muscle developmental defects.
The blood pressure and heart rate of the heterozygous mice were higher than those of the wild-type mice, indicating heart function defects.
We performed mouse exon arrays to study the muscle development mechanism.
The processes regulated by hnRNP A1 included cell adhesion and muscle contraction.
The expression levels of muscle development-related genes in hnRNP A1 +/− mice were significantly different from those in wild-type mice, as detected using qRT-PCR.
We further confirmed the alternative splicing patterns of muscle development-related genes including mef2c , lrrfip1 , usp28 and abcc9 .
Alternative mRNA isoforms of these genes were increased in hnRNP A1 +/− mice compared with wild-type mice.
Furthermore, we revealed that the functionally similar hnRNP A2/B1 did not compensate for the expression of hnRNP A1 in organisms.
In summary, our study demonstrated that hnRNP A1 plays a critical and irreplaceable role in embryonic muscle development by regulating the expression and alternative splicing of muscle-related genes.

Related Results

Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Objectives: Anterior cruciate ligament (ACL) reconstruction is the 6th most common orthopedic procedure performed in the United States (1,2). There is substanti...
Renal tubular (pro)renin receptor deletion does not protect against kidney injury in db/db mice
Renal tubular (pro)renin receptor deletion does not protect against kidney injury in db/db mice
Background: The (pro)renin receptor (PRR) is a multifunctional protein implicated in blood pressure regulation and kidney fibrosis. Previous studies report enhanced PRR expression ...
5. All That glitters is not gold
5. All That glitters is not gold
Abstract Introduction Inflammatory muscle disease is a rare but well-recognised manifestation of systemic vasculitis. It can pre...
GW24-e2259 Evaluation of atherosclerosis in low density lipoprotein receptor defect mice by ultrasound biomicroscopy
GW24-e2259 Evaluation of atherosclerosis in low density lipoprotein receptor defect mice by ultrasound biomicroscopy
Objectives Low density lipoprotein receptor defect mice model by transgenetic technology was used to detect atherosclerosis by Ultrasound Biology (UBM). And evalu...
Supplementary Data from Targeted BiTE Expression by an Oncolytic Vector Augments Therapeutic Efficacy Against Solid Tumors
Supplementary Data from Targeted BiTE Expression by an Oncolytic Vector Augments Therapeutic Efficacy Against Solid Tumors
<p>Supplementary Methods, Supplementary Figures S1-S15 Fig. S1. Purification and binding specificity of MV-encoded BiTEs. (A) Purification of MV-expressed BiTEs. Vero cells w...
Effects of Disruption of The Plasminogen Gene on Thrombosis, Growth, and Health in Mice
Effects of Disruption of The Plasminogen Gene on Thrombosis, Growth, and Health in Mice
Background Circumstantial evidence suggests that the plasminogen/plasmin system plays a role in many biological processes, including hemostasis, cell migration, and dev...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
PO-231 Effects of exercise on muscle atrophy in simulated weightless rats
PO-231 Effects of exercise on muscle atrophy in simulated weightless rats
Objective Insufficient physical activity, aerospace weight loss, and fixed treatment of fractures, tendons, and neuropathy, or the resulting muscle atrophy caused by reduced exerci...

Back to Top