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排序方式: 共有203条查询结果,搜索用时 31 毫秒
1.
Charlotte W Ockeloen Marjolein H Willemsen Sonja de Munnik Bregje WM van Bon Nicole de Leeuw Aad Verrips Sarina G Kant Elizabeth A Jones Han G Brunner Rosa LE van Loon Eric EJ Smeets Mieke M van Haelst Gijs van Haaften Ann Nordgren Helena Malmgren Giedre Grigelioniene Sascha Vermeer Pedro Louro Lina Ramos Thomas JJ Maal Celeste C van Heumen Helger G Yntema Carine EL Carels Tjitske Kleefstra 《European journal of human genetics : EJHG》2015,23(9):1270-1185
Loss-of-function variants in ANKRD11 were identified as the cause of KBG syndrome, an autosomal dominant syndrome with specific dental, neurobehavioural, craniofacial and skeletal anomalies. We present the largest cohort of KBG syndrome cases confirmed by ANKRD11 variants reported so far, consisting of 20 patients from 13 families. Sixteen patients were molecularly diagnosed by Sanger sequencing of ANKRD11, one familial case and three sporadic patients were diagnosed through whole-exome sequencing and one patient was identified through genomewide array analysis. All patients were evaluated by a clinical geneticist. Detailed orofacial phenotyping, including orthodontic evaluation, intra-oral photographs and orthopantomograms, was performed in 10 patients and revealed besides the hallmark feature of macrodontia of central upper incisors, several additional dental anomalies as oligodontia, talon cusps and macrodontia of other teeth. Three-dimensional (3D) stereophotogrammetry was performed in 14 patients and 3D analysis of patients compared with controls showed consistent facial dysmorphisms comprising a bulbous nasal tip, upturned nose with a broad base and a round or triangular face. Many patients exhibited neurobehavioural problems, such as autism spectrum disorder or hyperactivity. One-third of patients presented with (conductive) hearing loss. Congenital heart defects, velopharyngeal insufficiency and hip anomalies were less frequent. On the basis of our observations, we recommend cardiac assessment in children and regular hearing tests in all individuals with a molecular diagnosis of KBG syndrome. As ANKRD11 is a relatively common gene in which sequence variants have been identified in individuals with neurodevelopmental disorders, it seems an important contributor to the aetiology of both sporadic and familial cases. 相似文献
2.
De Novo Mutations in the Motor Domain of KIF1A Cause Cognitive Impairment,Spastic Paraparesis,Axonal Neuropathy,and Cerebellar Atrophy
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Jae‐Ran Lee Myriam Srour Doyoun Kim Fadi. F. Hamdan So‐Hee Lim Catherine Brunel‐Guitton Jean‐Claude Décarie Elsa Rossignol Grant A. Mitchell Allison Schreiber Rocio Moran Keith Van Haren Randal Richardson Joost Nicolai Karin M.E.J. Oberndorff Justin D. Wagner Kym M. Boycott Elisa Rahikkala Nella Junna Henna Tyynismaa Inge Cuppen Nienke E. Verbeek Connie T.R.M. Stumpel Michel A. Willemsen Sonja A. de Munnik Guy A. Rouleau Eunjoon Kim Erik‐Jan Kamsteeg Tjitske Kleefstra Jacques L. Michaud 《Human mutation》2015,36(1):69-78
KIF1A is a neuron‐specific motor protein that plays important roles in cargo transport along neurites. Recessive mutations in KIF1A were previously described in families with spastic paraparesis or sensory and autonomic neuropathy type‐2. Here, we report 11 heterozygous de novo missense mutations (p.S58L, p.T99M, p.G102D, p.V144F, p.R167C, p.A202P, p.S215R, p.R216P, p.L249Q, p.E253K, and p.R316W) in KIF1A in 14 individuals, including two monozygotic twins. Two mutations (p.T99M and p.E253K) were recurrent, each being found in unrelated cases. All these de novo mutations are located in the motor domain (MD) of KIF1A. Structural modeling revealed that they alter conserved residues that are critical for the structure and function of the MD. Transfection studies suggested that at least five of these mutations affect the transport of the MD along axons. Individuals with de novo mutations in KIF1A display a phenotype characterized by cognitive impairment and variable presence of cerebellar atrophy, spastic paraparesis, optic nerve atrophy, peripheral neuropathy, and epilepsy. Our findings thus indicate that de novo missense mutations in the MD of KIF1A cause a phenotype that overlaps with, while being more severe, than that associated with recessive mutations in the same gene. 相似文献
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Esther G. Gerrits Helen L. Lutgers Nanne Kleefstra Klaas H. Groenier Andries J. Smit Rijk O. B. Gans Henk J. G. Bilo 《Journal of diabetes science and technology》2008,2(4):572-577
Background
Glycemic memory can be reflected by tissue accumulation of advanced glycation end products (AGEs). In type 1 diabetes mellitus (T1DM) patients, hemoglobin A1c (HbA1c) levels over various time periods poorly predicted the accumulation of different AGEs in skin biopsies. Our aim was to investigate whether HbA1c assessments can predict the change in skin AGEs during time in type 2 diabetes mellitus (T2DM).Methods
We included 452 T2DM patients participating in a shared-care setting, who are screened annually for HbA1c and diabetic complications. Baseline and follow-up levels of skin AGEs were assessed with a validated noninvasive autofluorescence (AF) method, which is based on the fluorescence characteristics of certain AGEs.Results
Our study population had a mean age of 65 years and 54% were female. After a mean follow-up duration of 3.3 years, linear regression analyses showed weak relationships among different assessments of HbA1c (baseline, maximum, mean, and variance of HbA1c) and skin AF at follow-up. Baseline skin AF and age were predictors of skin AF at follow-up, but diabetes duration, smoking, and creatinine were of less or no predictive value for skin AF at follow-up.Conclusions
In our T2DM population, integrated HbA1c assessments over years poorly predict the change in skin AGE level measured by skin AF. These findings agree with results in patients with T1DM. This suggests either the need for longer exposure to glucose disturbances to change tissue AGEs or other mechanisms, such as oxidative stress, leading to AGE accumulation. 相似文献6.
Human IL-23-producing type 1 macrophages promote but IL-10-producing type 2 macrophages subvert immunity to (myco)bacteria 总被引:24,自引:0,他引:24
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7.
A 12q24.31 interstitial deletion in an adult male with MODY3: Neuropsychiatric and neuropsychological characteristics
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8.
Arjan PM de Brouwer Sander B Nabuurs Ingrid EC Verhaart Astrid R Oudakker Roel Hordijk Helger G Yntema Jannet M Hordijk-Hos Krysta Voesenek Bert BA de Vries Ton van Essen Wei Chen Hao Hu Jamel Chelly Johan T den Dunnen Vera M Kalscheuer Annemieke M Aartsma-Rus Ben CJ Hamel Hans van Bokhoven Tjitske Kleefstra 《European journal of human genetics : EJHG》2014,22(4):480-485
We have identified a deletion of 3 base pairs in the dystrophin gene (DMD), c.9711_9713del, in a family with nonspecific X-linked intellectual disability (ID) by sequencing of the exons of 86 known X-linked ID genes. This in-frame deletion results in the deletion of a single-amino-acid residue, Leu3238, in the brain-specific isoform Dp71 of dystrophin. Linkage analysis supported causality as the mutation was present in the 7.6 cM linkage interval on Xp22.11–Xp21.1 with a maximum positive LOD score of 2.41 (MRX85 locus). Molecular modeling predicts that the p.(Leu3238del) deletion results in the destabilization of the C-terminal domain of dystrophin and hence reduces the ability to interact with β-dystroglycan. Correspondingly, Dp71 protein levels in lymphoblastoid cells from the index patient are 6.7-fold lower than those in control cell lines (P=0.08). Subsequent determination of the creatine kinase levels in blood of the index patient showed a mild but significant elevation in serum creatine kinase, which is in line with impaired dystrophin function. In conclusion, we have identified the first DMD mutation in Dp71 that results in ID without muscular dystrophy. 相似文献
9.
Christian P Vink Charlotte W Ockeloen Sietske ten Kate David A Koolen Johannes Kristian Ploos van Amstel Anne-Marie Kuijpers-Jagtman Celeste C van Heumen Tjitske Kleefstra Carine E L Carels 《European journal of human genetics : EJHG》2014,22(9):1063-1070
This article describes the inter- and intra-familial phenotypic variability in four families with WNT10A mutations. Clinical characteristics of the patients range from mild to severe isolated tooth agenesis, over mild symptoms of ectodermal dysplasia, to more severe syndromic forms like odonto-onycho-dermal dysplasia (OODD) and Schöpf–Schulz–Passarge syndrome (SSPS). Recurrent WNT10A mutations were identified in all affected family members and the associated symptoms are presented with emphasis on the dentofacial phenotypes obtained with inter alia three-dimensional facial stereophotogrammetry. A comprehensive overview of the literature regarding WNT10A mutations, associated conditions and developmental defects is presented. We conclude that OODD and SSPS should be considered as variable expressions of the same WNT10A genotype. In all affected individuals, a dished-in facial appearance was observed which might be helpful in the clinical setting as a clue to the underlying genetic etiology. 相似文献
10.