Literature DB >> 21496629

Limb-girdle muscular dystrophy 2H and the role of TRIM32.

Perry B Shieh1, Elena Kudryashova, Melissa J Spencer.   

Abstract

Limb-girdle muscular dystrophy (LGMD) 2H is a slowly progressive condition characterized by proximal weakness, atrophy, and mildly to moderately raised levels of creatine kinase. Facial weakness, scapular winging, hypertrophied calves, and Achilles tendon contractions are not uncommon and the age of onset ranges between the first and fourth decade. LGMD2H was originally described in the Hutterite population that resides in central Canada and the Dakotas of the USA. LGMD2H was mapped to a specific mutation in the TRIM32 gene and it has subsequently been shown that the same mutation also results in the "sarcotubular myopathy" syndrome, which was described histopathologically. TRIM32 appears to be an E3 ubiquitin ligase, containing the tripartite motif common to this family of proteins (RING finger, B-box, coiled-coil). A few substrates have been identified, including actin and dysbindin. Recent studies have identified additional mutations in the C-terminal region of TRIM32 that result in a dystrophic myopathy. Although TRIM32 appears to be expressed ubiquitously, it is still not clear why certain mutations of TRIM32 would result in a phenotype relatively restricted to skeletal muscle. A mutation in the B-box region of TRIM32 has also been shown to result in a more pleiotropic disorder, Bardet-Biedl Syndrome (BBS11). This disorder is associated with obesity, retinopathy, diabetes, polydactyly, renal abnormalities, learning disability, and hypogenitalism. It is likely that C-terminal mutations in TRIM32 affect the ability of muscle proteins to be degraded by the ubiquitin-proteasome pathway.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21496629     DOI: 10.1016/B978-0-08-045031-5.00009-8

Source DB:  PubMed          Journal:  Handb Clin Neurol        ISSN: 0072-9752


  19 in total

1.  Optimization of wrMTrck to monitor Drosophila larval locomotor activity.

Authors:  David S Brooks; Kumar Vishal; Jessica Kawakami; Samuel Bouyain; Erika R Geisbrecht
Journal:  J Insect Physiol       Date:  2016-07-16       Impact factor: 2.354

Review 2.  TRIM proteins in autophagy: selective sensors in cell damage and innate immune responses.

Authors:  Martina Di Rienzo; Alessandra Romagnoli; Manuela Antonioli; Mauro Piacentini; Gian Maria Fimia
Journal:  Cell Death Differ       Date:  2020-01-22       Impact factor: 15.828

3.  Satellite cell senescence underlies myopathy in a mouse model of limb-girdle muscular dystrophy 2H.

Authors:  Elena Kudryashova; Irina Kramerova; Melissa J Spencer
Journal:  J Clin Invest       Date:  2012-04-16       Impact factor: 14.808

4.  TRIM24 protein promotes and TRIM32 protein inhibits cardiomyocyte hypertrophy via regulation of dysbindin protein levels.

Authors:  Ankush Borlepawar; Ashraf Yusuf Rangrez; Alexander Bernt; Lynn Christen; Samuel Sossalla; Derk Frank; Norbert Frey
Journal:  J Biol Chem       Date:  2017-05-02       Impact factor: 5.157

5.  Multiscale modelling of relationships between protein classes and drug behavior across all diseases using the CANDO platform.

Authors:  Geetika Sethi; Gaurav Chopra; Ram Samudrala
Journal:  Mini Rev Med Chem       Date:  2015       Impact factor: 3.862

6.  Trim32 Deficiency Enhances Th2 Immunity and Predisposes to Features of Atopic Dermatitis.

Authors:  Yuangang Liu; Zhiping Wang; Rachel De La Torre; Ashley Barling; Takahiro Tsujikawa; Noah Hornick; Jon Hanifin; Eric Simpson; Yun Wang; Emily Swanzey; Aaron Wortham; Hao Ding; Lisa M Coussens; Molly Kulesz-Martin
Journal:  J Invest Dermatol       Date:  2016-10-05       Impact factor: 8.551

7.  TRIM32 Inhibition Attenuates Apoptosis, Oxidative Stress, and Inflammatory Injury in Podocytes Induced by High Glucose by Modulating the Akt/GSK-3β/Nrf2 Pathway.

Authors:  Zhao Chen; Lifang Tian; Li Wang; Xiaotao Ma; Fuqian Lei; Xianghui Chen; Rongguo Fu
Journal:  Inflammation       Date:  2021-11-16       Impact factor: 4.092

Review 8.  Posttranslational modifications of desmin and their implication in biological processes and pathologies.

Authors:  Daniel L Winter; Denise Paulin; Mathias Mericskay; Zhenlin Li
Journal:  Histochem Cell Biol       Date:  2013-10-04       Impact factor: 4.304

9.  Thin, a Trim32 ortholog, is essential for myofibril stability and is required for the integrity of the costamere in Drosophila.

Authors:  Elisa M LaBeau-DiMenna; Kathleen A Clark; Kenneth D Bauman; Daniel S Parker; Richard M Cripps; Erika R Geisbrecht
Journal:  Proc Natl Acad Sci U S A       Date:  2012-10-15       Impact factor: 11.205

10.  Trim32 suppresses cerebellar development and tumorigenesis by degrading Gli1/sonic hedgehog signaling.

Authors:  Minglei Wang; Wenqin Luo; Yu Zhang; Rong Yang; Xuefeng Li; Yanjing Guo; Chenlu Zhang; Ru Yang; Wei-Qiang Gao
Journal:  Cell Death Differ       Date:  2019-09-17       Impact factor: 15.828

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