Keyword search (4,163 papers available)

"TRAPP" Keyword-tagged Publications:

Title Authors PubMed ID
1 From water to sediment: A meta-analysis of microplastic distribution and the impact of dams in reservoir ecosystems Gao W; Zhang P; Wang H; Yang X; An C; 41215774
ENCS
2 Prioritizing Chemical Features in Non-targeted Analysis through Spatial Trend Analysis: Application to the Identification of Organic Chemicals Subject to Mountain Cold-Trapping Zhang X; Zhan F; Hao C; Lei YD; Wania F; 39912640
CHEMBIOCHEM
3 A Humanized Yeast Model for Studying TRAPP Complex Mutations; Proof-of-Concept Using Variants from an Individual with a TRAPPC1-Associated Neurodevelopmental Syndrome Zykaj E; Abboud C; Asadi P; Warsame S; Almousa H; Milev MP; Greco BM; López-Sánchez M; Bratkovic D; Kachroo AH; Pérez-Jurado LA; Sacher M; 39273027
BIOLOGY
4 TRAPPC6B biallelic variants cause a neurodevelopmental disorder with TRAPP II and trafficking disruptions Almousa H; Lewis SA; Bakhtiari S; Nordlie SH; Pagnozzi A; Magee H; Efthymiou S; Heim JA; Cornejo P; Zaki MS; Anwar N; Maqbool S; Rahman F; Neilson DE; Vemuri A; Jin SC; Yang XR; Heidari A; van Gassen K; Trimouille A; Thauvin-Robinet C; Liu J; Bruel AL; Tomoum H; Shata MO; Hashem MO; Toosi MB; Ghayoor Karimiani E; Yesil G; Lingappa L; Baruah D; Ebrahimzadeh F; Van-Gils J; Faivre L; Zamani M; Galehdari H; Sadeghian S; Shariati G; Mohammad R; van der Smagt J; Qari A; Vincent JB; Innes AM; Dursun A; Özgül RK; A 37713627
BIOLOGY
5 TRAPPC11-related muscular dystrophy with hypoglycosylation of alpha-dystroglycan in skeletal muscle and brain Munot P; McCrea N; Torelli S; Manzur A; Sewry C; Chambers D; Feng L; Ala P; Zaharieva I; Ragge N; Roper H; Marton T; Cox P; Milev MP; Liang WC; Maruyama S; Nishino I; Sacher M; Phadke R; Muntoni F; 34648194
BIOLOGY
6 Formation of oil-particle aggregates: Impacts of mixing energy and duration Ji W; Boufadel M; Zhao L; Robinson B; King T; An C; Zhang BH; Lee K; 34252767
ENCS
7 TRAPPing a neurological disorder: from yeast to humans. Lipatova Z, Van Bergen N, Stanga D, Sacher M, Christodoulou J, Segev N 32116085
BIOLOGY
8 Mutations in TRAPPC12 Manifest in Progressive Childhood Encephalopathy and Golgi Dysfunction. Milev MP, Grout ME, Saint-Dic D, Cheng YH, Glass IA, Hale CJ, Hanna DS, Dorschner MO, Prematilake K, Shaag A, Elpeleg O, Sacher M, Doherty D, Edvardson S 28777934
BIOLOGY
9 TRAPPC11 and GOSR2 mutations associate with hypoglycosylation of α-dystroglycan and muscular dystrophy. Larson AA, Baker PR, Milev MP, Press CA, Sokol RJ, Cox MO, Lekostaj JK, Stence AA, Bossler AD, Mueller JM, Prematilake K, Tadjo TF, Williams CA, Sacher M, Moore SA 29855340
BIOLOGY
10 Bi-allelic mutations in TRAPPC2L result in a neurodevelopmental disorder and have an impact on RAB11 in fibroblasts. Milev MP, Graziano C, Karall D, Kuper WFE, Al-Deri N, Cordelli DM, Haack TB, Danhauser K, Iuso A, Palombo F, Pippucci T, Prokisch H, Saint-Dic D, Seri M, Stanga D, Cenacchi G, van Gassen KLI, Zschocke J, Fauth C, Mayr JA, Sacher M, van Hasselt PM 30120216
BIOLOGY
11 TRAPPopathies: An emerging set of disorders linked to variations in the genes encoding transport protein particle (TRAPP)-associated proteins. Sacher M, Shahrzad N, Kamel H, Milev MP 30152084
BIOLOGY

 

Title:TRAPPC6B biallelic variants cause a neurodevelopmental disorder with TRAPP II and trafficking disruptions
Authors:Almousa HLewis SABakhtiari SNordlie SHPagnozzi AMagee HEfthymiou SHeim JACornejo PZaki MSAnwar NMaqbool SRahman FNeilson DEVemuri AJin SCYang XRHeidari Avan Gassen KTrimouille AThauvin-Robinet CLiu JBruel ALTomoum HShata MOHashem MOToosi MBGhayoor Karimiani EYesil GLingappa LBaruah DEbrahimzadeh FVan-Gils JFaivre LZamani MGalehdari HSadeghian SShariati GMohammad Rvan der Smagt JQari AVincent JBInnes AMDursun AÖzgül RKA
Link:https://pubmed.ncbi.nlm.nih.gov/37713627/
DOI:10.1093/brain/awad301
Publication:Brain : a journal of neurology
Keywords:ER-golgi traffickingNEDMEBATRAPP-II complexTRAPPC6BTRAPPopathyTrs33
PMID:37713627 Category: Date Added:2023-09-15
Dept Affiliation: BIOLOGY

Description:

Highly conserved transport protein particle (TRAPP) complexes regulate subcellular trafficking pathways. Accurate protein trafficking has been increasingly recognized to be critically important for normal development, particularly in the nervous system. Variants in most TRAPP complex subunits have been found to lead to neurodevelopmental disorders with diverse but overlapping phenotypes. We expand on limited prior reports on TRAPPC6B with detailed clinical and neuroradiologic assessments, and studies on mechanisms of disease, and new types of variants. We describe 29 additional patients from 18 independent families with biallelic variants in TRAPPC6B. We identified 7 homozygous nonsense (n = 12 patients) and 8 canonical splice-site variants (n = 17 patients). In addition, we identified one patient with compound heterozygous splice-site/missense variants with a milder phenotype and one patient with homozygous missense variants. Patients displayed non-progressive microcephaly, global developmental delay/intellectual disability, epilepsy, and absent expressive language. Movement disorders including stereotypies, spasticity, and dystonia were also observed. Brain imaging revealed reductions in cortex, cerebellum, and corpus callosum size with frequent white matter hyperintensity. Volumetric measurements indicated globally diminished volume rather than specific regional losses. We identified a reduced rate of trafficking into the Golgi apparatus and Golgi fragmentation in patient-derived fibroblasts that was rescued by wild type TRAPPC6B. Molecular studies revealed a weakened interaction between mutant TRAPPC6B (c.454C > T, p.Q152*) and its TRAPP binding partner TRAPPC3. Patient-derived fibroblasts from the TRAPPC6B (c.454C > T, p.Q152*) variant displayed reduced levels of TRAPPC6B as well as other TRAPP II complex-specific members (TRAPPC9 and TRAPPC10). Interestingly, the levels of the TRAPPC6B homologue TRAPPC6A were found to be elevated. Moreover, co-immunoprecipitation experiments showed that TRAPPC6A co-precipitates equally with TRAPP II and TRAPP III, while TRAPPC6B co-precipitates significantly more with TRAPP II, suggesting enrichment of the protein in the TRAPP II complex. This implies that variants in TRAPPC6B may preferentially affect TRAPP II functions compared to TRAPP III functions. Finally, we assessed phenotypes in a Drosophila TRAPPC6B-deficiency model. Neuronal TRAPPC6B knockdown impaired locomotion and led to wing posture defects, supporting a role for TRAPPC6B in neuromotor function. Our findings confirm the association of damaging biallelic TRAPPC6B variants with microcephaly, intellectual disability, language impairments, and epilepsy. A subset of patients also exhibited dystonia and/or spasticity with impaired ambulation. These features overlap with disorders arising from pathogenic variants in other TRAPP subunits, particularly components of the TRAPP II complex. These findings suggest that TRAPPC6B is essential for brain development and function, and TRAPP II complex activity may be particularly relevant for mediating this function.





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