keyword
https://read.qxmd.com/read/37369984/force-dependent-structural-changes-of-filamin-c-rod-domains-regulated-by-filamin-c-dimer
#21
JOURNAL ARTICLE
Yunxin Deng, Jie Yan
Filamin C (FLNC), a large dimeric actin-binding protein in muscle cells, plays a critical role in transmitting force in the cytoskeleton and that between membrane receptors and the cytoskeleton. It performs crucial mechanosensing and downstream mechanotransduction functions via force-dependent interactions with signaling proteins. Mutations in FLNC have been linked to muscle and heart diseases. The mechanical responses of the force-bearing elements in FLNC have not been determined. This study investigated the mechanical responses of FLNC domains and their dimerization interface using magnetic tweezers...
June 27, 2023: Journal of the American Chemical Society
https://read.qxmd.com/read/37174721/novel-filamin-c-myofibrillar-myopathy-variants-cause-different-pathomechanisms-and-alterations-in-protein-quality-systems
#22
JOURNAL ARTICLE
Dominik Sellung, Lorena Heil, Nassam Daya, Frank Jacobsen, Janine Mertens-Rill, Heidi Zhuge, Kristina Döring, Misagh Piran, Hendrik Milting, Andreas Unger, Wolfgang A Linke, Rudi Kley, Corinna Preusse, Andreas Roos, Dieter O Fürst, Peter F M van der Ven, Matthias Vorgerd
Myofibrillar myopathies (MFM) are a group of chronic muscle diseases pathophysiologically characterized by accumulation of protein aggregates and structural failure of muscle fibers. A subtype of MFM is caused by heterozygous mutations in the filamin C ( FLNC ) gene, exhibiting progressive muscle weakness, muscle structural alterations and intracellular protein accumulations. Here, we characterize in depth the pathogenicity of two novel truncating FLNc variants (p.Q1662X and p.Y2704X) and assess their distinct effect on FLNc stability and distribution as well as their impact on protein quality system (PQS) pathways...
May 5, 2023: Cells
https://read.qxmd.com/read/37174658/z-disk-associated-plectin-isoform-1d-spatial-arrangement-interaction-partners-and-role-in-filamin-c-homeostasis
#23
JOURNAL ARTICLE
Lilli Winter, Ilona Staszewska-Daca, Stefan Zittrich, Fatiha Elhamine, Michaela M Zrelski, Katy Schmidt, Irmgard Fischer, Christian Jüngst, Astrid Schauss, Wolfgang H Goldmann, Robert Stehle, Gerhard Wiche
Plectin, a highly versatile cytolinker protein, is crucial for myofiber integrity and function. Accordingly, mutations in the human gene ( PLEC ) cause several rare diseases, denoted as plectinopathies, with most of them associated with progressive muscle weakness. Of several plectin isoforms expressed in skeletal muscle and the heart, P1d is the only isoform expressed exclusively in these tissues. Using high-resolution stimulated emission depletion (STED) microscopy, here we show that plectin is located within the gaps between individual α-actinin-positive Z-disks, recruiting and bridging them to desmin intermediate filaments (Ifs)...
April 26, 2023: Cells
https://read.qxmd.com/read/37056997/corrigendum-nudc-l279p-mutation-destabilizes-filamin-a-by-inhibiting-the-hsp90-chaperoning-pathway-and-suppresses-cell-migration
#24
Min Liu, Zhangqi Xu, Cheng Zhang, Chunxia Yang, Jiaxing Feng, Yiqing Lu, Wen Zhang, Wenwen Chen, Xiaoyang Xu, Xiaoxia Sun, Mingyang Yang, Wei Liu, Tianhua Zhou, Yuehong Yang
[This corrects the article DOI: 10.3389/fcell.2021.671233.].
2023: Frontiers in Cell and Developmental Biology
https://read.qxmd.com/read/36982793/the-igsf-cell-adhesion-protein-clmp-and-congenital-short-bowel-syndrome-csbs
#25
REVIEW
Fritz G Rathjen, René Jüttner
The immunoglobulin-like cell adhesion molecule CLMP is a member of the CAR family of cell adhesion proteins and is implicated in human congenital short-bowel syndrome (CSBS). CSBS is a rare but very severe disease for which no cure is currently available. In this review, we compare data from human CSBS patients and a mouse knockout model. These data indicate that CSBS is characterized by a defect in intestinal elongation during embryonic development and impaired peristalsis. The latter is driven by uncoordinated calcium signaling via gap junctions, which is linked to a reduction in connexin43 and 45 levels in the circumferential smooth muscle layer of the intestine...
March 16, 2023: International Journal of Molecular Sciences
https://read.qxmd.com/read/36864778/novel-filamin-c-flnc-variant-causes-a-severe-form-of-familial-mixed-hypertrophic-restrictive-cardiomyopathy
#26
JOURNAL ARTICLE
Nathalie Gaudreault, Louis-Jacques Ruel, Cyndi Henry, Jennifer Schleit, Patrick Lagüe, Jean Champagne, Mario Sénéchal, Jean-François Sarrazin, François Philippon, Yohan Bossé, Christian Steinberg
Variants of filamin C (FLNC) have been identified as rare genetic substrate for hypertrophic cardiomyopathy (HCM). Data on the clinical course of FLNC-related HCM are conflicting with some studies suggesting mild phenotypes whereas other studies have reported more severe outcomes. In this study, we present a novel FLNC variant (Ile1937Asn) that was identified in a large family of French-Canadian descent with excellent segregation data. FLNC-Ile1937Asn is a novel missense variant characterized by full penetrance and poor clinical outcomes...
March 2, 2023: American Journal of Medical Genetics. Part A
https://read.qxmd.com/read/36857526/identification-of-filamin-a-mechanobinding-partner-iii-sav1-specifically-interacts-with-filamin-a-mechanosensitive-domain-21
#27
JOURNAL ARTICLE
Huaguan Zhang, Zhenfeng Mao, Ziwei Yang, Fumihiko Nakamura
Filamin A (FLNA) cross-links actin filaments and mediates mechanotransduction by force-induced conformational changes of its domains. FLNA's mechanosensitive immunoglobulin-like repeats (R) interact with each other to create cryptic binding sites, which can be exposed by physiologically relevant mechanical forces. Using the FLNA mechanosensing domains as an affinity ligand followed by stable isotope labeling by amino acids in cell culture (SILAC)-based proteomics, we recently identified smoothelin and fimbacin as FLNA mechanobinding proteins...
March 1, 2023: Biochemistry
https://read.qxmd.com/read/36824501/association-of-androgen-receptor-gene-mutations-with-the-copy-number-of-androgen-receptor-silk-protein-a-complex-and-glutathione-s-transferases-t1-and-m1-in-prostate-cancer-patients
#28
JOURNAL ARTICLE
Yan Zhang, Xiangdi Meng, Zhaosen Ma, Zhou Sun, Zhixin Wang
OBJECTIVE: The purpose of our work was to explore the association of mutations in the androgen receptor gene and copy numbers of the androgen-receptor silk protein A complex with glutathione-S-transferases T1 and M1 in prostate cancer patients. MATERIALS AND METHODS: Eighty-five patients with PC and 85 healthy controls were included in the study. Fasting peripheral venous blood was collected, whole blood genomic DNA was extracted, and AR gene-receptor genotype was detected by a high-resolution melting curve analysis detection technology...
2023: Genetics Research
https://read.qxmd.com/read/36806943/the-force-dependent-filamin-a-g3bp1-interaction-regulates-phase-separated-stress-granule-formation
#29
JOURNAL ARTICLE
Ziyi Feng, Zhenfeng Mao, Ziwei Yang, Xiaowei Liu, Fumihiko Nakamura
Filamin A (FLNA) is an actin crosslinking protein that mediates mechanotransduction. External and internal mechanical forces, through the actin cytoskeleton, can induce conformational changes of the FLNA molecule to expose cryptic binding sites for its binding partners. Here, we identified G3BP1 (Ras-GTPase activating protein SH3 domain-binding protein 1) as a new FLNA mechanobinding partner. Unlike other FLNA-binding partners to the mechanosensing domain repeat 21 (R21), G3BP1 requires an additional neighboring R22 to interact...
February 20, 2023: Journal of Cell Science
https://read.qxmd.com/read/36734119/mutation-of-flna-attenuating-the-migration-of-abdominal-muscles-contributed-to-melnick-needles-syndrome-mns-in-a-family-with-recurrent-miscarriage
#30
JOURNAL ARTICLE
Xin Luo, Zailin Yang, Jing Zeng, Jing Chen, Ningxuan Chen, Xiaoyan Jiang, Qinlv Wei, Ping Yi, Jing Xu
BACKGROUND: Filamin A, encoded by the X-linked gene FLNA, links the cell membrane with the cytoskeleton and acts as a regulator of the actin cytoskeleton. Mutations in FLNA cause a large spectrum of congenital malformations during embryonic development, including Melnick-Needles syndrome (MNS). However, reports of MNS, especially in males, are rare, and the pathogenesis molecular mechanisms are not well understood. METHODS: We found a family with two consecutive miscarriages of similar fetuses with multiple malformations...
February 3, 2023: Molecular Genetics & Genomic Medicine
https://read.qxmd.com/read/36704846/deficiency-of-filamin-a-in-smooth-muscle-cells-protects-against-hypoxia%C3%A2-mediated-pulmonary-hypertension-in-mice
#31
JOURNAL ARTICLE
Yaguo Zheng, Hong Ma, Yufeng Yan, Peng Ye, Wande Yu, Song Lin, Shao-Liang Chen
Filamin A (FLNA) is a high molecular weight cytoskeleton protein important for cell locomotion. A relationship between FLNA mutations and pulmonary arterial hypertension (PAH) has previously been reported; however, the detailed mechanism remains unclear. The present study aimed to explore the role of FLNA in vascular smooth muscle cells during the development of PAH. Smooth muscle cell (SMC)‑specific FLNA‑deficient mice were generated and the mice were then exposed to hypoxia for 28 days to build the mouse model of PAH...
March 2023: International Journal of Molecular Medicine
https://read.qxmd.com/read/36609526/expression-of-lim-domain-binding-3-ldb3-a-striated-muscle-z-band-alternatively-spliced-pdz-motif-protein-in-the-nervous-system
#32
JOURNAL ARTICLE
Yotam Blech-Hermoni, Kalpana Subedi, Maya Silver, Leah Jensen, Stephen Coscia, Malcolm M Kates, Yongmei Zhao, Castle Raley, Nancy Edwards, Bao Tran, Abhik Ray-Chaudhary, Pankaj Pathak, Ami Mankodi
LIM domain-binding 3 (LDB3) is a member of the Enigma family of PDZ-LIM proteins. LDB3 has been reported as a striated muscle-specific Z-band alternatively spliced protein that plays an important role in mechanosensory actin cytoskeleton remodeling. This study shows that LDB3 is broadly expressed in the central and peripheral nervous system of human and mouse. LDB3 is predominantly expressed in the adult stages compared to early development and at a significantly higher level in the spinal cord than in the brain...
January 6, 2023: Scientific Reports
https://read.qxmd.com/read/36607244/phosphorylation-regulation-mechanism-of-%C3%AE-2-integrin-for-the-binding-of-filamin-revealed-by-markov-state-model
#33
JOURNAL ARTICLE
Xiaokun Hong, Kaiyuan Song, Mueed Ur Rahman, Ting Wei, Yan Zhang, Lin-Tai Da, Hai-Feng Chen
Leukocyte adhesion deficiency-1 (LAD-1) disorder is a severe immunodeficiency syndrome caused by deficiency or mutation of β2 integrin. The phosphorylation on threonine 758 of β2 integrin acts as a molecular switch inhibiting the binding of filamin. However, the switch mechanism of site-specific phosphorylation at the atom level is still poorly understood. To resolve the regulation mechanism, all-atom molecular dynamics simulation and Markov state model were used to study the dynamic regulation pathway of phosphorylation...
January 6, 2023: Journal of Chemical Information and Modeling
https://read.qxmd.com/read/36560844/novel-combination-of-flnc-c-5707g-a-p-glu1903lys-and-bag3-c-610g-a-p-gly204arg-genetic-variant-expressing-restrictive-cardiomyopathy-phenotype-in-an-adolescent-girl
#34
JOURNAL ARTICLE
Vivek Kumar, Pramod Kumar, Lakshita Chauhan, Aradhana Dwivedi, H Ravi Ramamurthy
Pediatric restrictive cardiomyopathy (RCM) is the rarest in its group and accounts for only 2.5-5% of all the diagnosed cardiomyopathies in children. It is a relentless disease with poor prognosis, and heart transplantation is the only long-term treatment option. The aetiology of pediatric RCM varies and includes conditions such as endomyocardial fibrosis, storage disorder (Fabry's disease, MPS), drugs, radiation, post-cardiac transplantation and genetic. Genetic causes encompasses mutations in sarcomeric (troponin I and T, actin, myosin and titin) and nonsarcomeric protein-coding genes (Desmin, RSK2, lamin A/C and bcl-2-associated athanogene 3 ( BAG3 ))...
2022: Journal of Genetics
https://read.qxmd.com/read/36509760/a-novel-flna-variant-in-a-fetus-with-skeletal-dysplasia
#35
JOURNAL ARTICLE
Kyoko Oshina, Yoshimasa Kamei, Asuka Hori, Fuyuki Hasegawa, Kosuke Taniguchi, Ohsuke Migita, Atsuo Itakura, Kenichiro Hata
Otopalatodigital spectrum disorder (OPDSD) is characterized by variable phenotypes, including skeletal dysplasia, and is caused by pathogenic variants in filamin A-encoding FLNA. FLNA variants associated with lethal OPDSD primarily alter the CH2 subdomain of the ABD of FLNA. Herein, we report a novel FLNA mutation in a fetus with severe skeletal dysplasia in a pregnant multigravida female with a history of repeated miscarriages and terminations.
December 13, 2022: Human Genome Variation
https://read.qxmd.com/read/36372407/sinus-of-valsalva-aneurysm-in-females
#36
JOURNAL ARTICLE
Yongshi Wang, Boting Wu, Jun Li, Xianhong Shu
Sinus of Valsalva aneurysm (SVA) is a rare cardiovascular disease with male predominance. Recently, an association with aortic aneurysm and SVA has been revealed in periventricular nodular heterotopia patients with loss-of-function Filamin A (FLNA) mutations, which were located on chromosome X and almost exclusively affect females.Among patients hospitalized for aortic surgery with aortic root diameter over 4.0 cm, next-generation sequencing was performed to investigate 30 candidate genes related to inherited aortic aneurysm syndromes and familial thoracic aortic aneurysm and dissection...
November 12, 2022: International Heart Journal
https://read.qxmd.com/read/36270577/multiple-cervical-root-resorption-involving-22-teeth-a-case-with-potential-genetic-predisposition
#37
JOURNAL ARTICLE
Wen Qin, Jing Gao, Sai Ma, Yan Wang, Dong-Mei Li, Wen-Kai Jiang, Fang Chen, Franklin Tay, Li-Na Niu
A rare case of extensive multiple idiopathic cervical root resorption with potential genetic predisposition was presented. A heathy 19-year-old Chinese male with no contributory medical or family/social history complained of pain during mastication that lasted for several months. Oral examination identified 7 missing teeth and external cervical root resorption involving 9 teeth. Comparison of orthopantomograms taken in May 2021 and February 2022 identified that cervical root resorption occurred in 22 teeth...
October 18, 2022: Journal of Endodontics
https://read.qxmd.com/read/36194907/generation-of-two-induced-pluripotent-stem-cell-lines-from-dilated-cardiomyopathy-patients-carrying-heterozygous-flnc-mutations
#38
JOURNAL ARTICLE
Ana Kojic, Hobin Kim, Julio V Guevara, Sai Ravada, Karim Sallam, Joseph C Wu
Dilated cardiomyopathy (DCM) is a heterogeneous cardiac disorder characterized by left ventricular dilatation and dysfunction. Mutations in dozens of cardiac genes have been connected to the development of DCM including the filamin C gene (FLNC). We generated two induced pluripotent stem cell (iPSCs) lines from DCM patients carrying single missense heterozygote FLNC mutations (c.6689G > A and c.3745G > A). Both lines expressed high levels of pluripotency markers, differentiated into derivatives of the three germ layers and possessed normal karyotypes...
September 26, 2022: Stem Cell Research
https://read.qxmd.com/read/36174535/case-report-filamin-a-mutation-lung-disease-recognized-in-an-11-year-old-child
#39
JOURNAL ARTICLE
Tahira West, Nikita Williamson, Javeed Akhter
The loss of function (LOF) due to mutations in the Filamin A (FLNA) gene may result in abnormality of the FLNA protein. Of the many clinical syndromes, this condition may produce chronic lung disease, which usually presents and is diagnosed in the infant/toddler age group. Its clinical pattern may mimic broncho-pulmonary dysplasia. It is part of the entities included in childhood interstitial lung disease group of disorders. We are herein reporting a patient that was diagnosed with FLNA-associated lung disease at 11 years of age...
September 29, 2022: Pediatric Pulmonology
https://read.qxmd.com/read/36104822/rare-clinical-phenotype-of-filaminopathy-presenting-as-restrictive-cardiomyopathy-and-myopathy-in-childhood
#40
JOURNAL ARTICLE
A Muravyev, T Vershinina, P Tesner, G Sjoberg, Yu Fomicheva, N Novák Čajbiková, A Kozyreva, S Zhuk, E Mamaeva, S Tarnovskaya, J Jornholt, P Sokolnikova, T Pervunina, E Vasichkina, T Sejersen, A Kostareva
BACKGROUND: FLNC is one of the few genes associated with all types of cardiomyopathies, but it also underlies neuromuscular phenotype. The combination of concomitant neuromuscular and cardiac involvement is not often observed in filaminopathies and the impact of this on the disease prognosis has hitherto not been analyzed. RESULTS: Here we provide a detailed clinical, genetic, and structural prediction analysis of distinct FLNC-associated phenotypes based on twelve pediatric cases...
September 14, 2022: Orphanet Journal of Rare Diseases
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