Literature DB >> 29193034

Hypermanganesemia with dystonia, polycythemia and cirrhosis in 10 patients: Six novel SLC30A10 mutations and further phenotype delineation.

M S Zaki1, M Y Issa1, H M Elbendary2, H El-Karaksy3, H Hosny4, C Ghobrial3, A El Safty5, A El-Hennawy6, A Oraby7, L Selim7, M S Abdel-Hamid8.   

Abstract

Biallelic mutations in the SLC30A10 gene cause an inborn error of Mn metabolism characterized by hypermanganesemia, polycythemia, early-onset dystonia, and liver cirrhosis (HMDPC). To date, only 14 families from various ethnic groups have been reported. Here, we describe 10 patients from 7 unrelated Egyptian families with HMDPC. Markedly elevated blood Mn levels, the characteristic basal ganglia hyperintensity on T1-weighted images, and variable degrees of extrapyramidal manifestations with or without liver disease were cardinal features in all patients. Eight patients presented with striking early diseased onset (≤2 years). Unexpectedly, early hepatic involvement before the neurological regression was noted in 3 patients. Mutational analysis of SLC30A10 gene revealed 6 novel homozygous mutations (c.77T > C (p.Leu26Pro), c.90C > G (p.Tyr30*), c.119A > C (p.Asp40Ala), c.122_124delCCT (p.Ser41del), c.780_782delCAT (p.Iso260del) and c.957 + 1G > C). Treatment using 2,3 dimercaptosuccinic acid as a manganese chelating agent showed satisfactory results with improvement of biochemical markers, hepatic manifestations and relative amelioration of the neurological symptoms. Our findings present a large cohort of patients with HMDPC from same ethnic group. The majority of our patients showed severe and early presentation with clear phenotypic variability among sibship. Moreover, we extend the phenotypic and mutational spectrum and emphasize the importance of early diagnosis and treatment of this potentially fatal disorder.
© 2017 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990SLC30A10; DMSA; dystonia; early phenotype; manganese; polycythemia

Mesh:

Substances:

Year:  2018        PMID: 29193034     DOI: 10.1111/cge.13184

Source DB:  PubMed          Journal:  Clin Genet        ISSN: 0009-9163            Impact factor:   4.438


  11 in total

1.  Hypermanganesemia with Dystonia 1: A Novel Mutation and Response to Iron Supplementation.

Authors:  Zuhal Yapici; Karin Tuschl; Mefkure Eraksoy
Journal:  Mov Disord Clin Pract       Date:  2019-11-12

2.  Putative metal binding site in the transmembrane domain of the manganese transporter SLC30A10 is different from that of related zinc transporters.

Authors:  Charles E Zogzas; Somshuvra Mukhopadhyay
Journal:  Metallomics       Date:  2018-08-15       Impact factor: 4.526

3.  Clinical Profile and Treatment Outcomes of Hypermanganesemia with Dystonia 1 and 2 among 27 Indian Children.

Authors:  Divyani Garg; Sangeetha Yoganathan; Uzma Shamim; Kshitij Mankad; Parveen Gulati; Vincenzo Bonifati; Abhijeet Botre; Umesh Kalane; Arushi Gahlot Saini; Naveen Sankhyan; Kavita Srivastava; Vykuntaraju K Gowda; Monica Juneja; Mahesh Kamate; Hansashree Padmanabha; Debasis Panigrahi; Shaila Pachapure; Vrajesh Udani; Atin Kumar; Sanjay Pandey; Maya Thomas; Sumita Danda; Shaikh Atif Iqbalahmed; Annadurai Subramanian; Harish Pemde; Varinder Singh; Mohammed Faruq; Suvasini Sharma
Journal:  Mov Disord Clin Pract       Date:  2022-08-12

4.  Chronic Manganese Exposure and the Enteric Nervous System: An in Vitro and Mouse in Vivo Study.

Authors:  Shivani Ghaisas; Dilshan S Harischandra; Bharathi Palanisamy; Alexandra Proctor; Huajun Jin; Somak Dutta; Souvarish Sarkar; Monica Langley; Gary Zenitsky; Vellareddy Anantharam; Arthi Kanthasamy; Gregory J Phillips; Anumantha Kanthasamy
Journal:  Environ Health Perspect       Date:  2021-08-19       Impact factor: 9.031

Review 5.  Brain manganese and the balance between essential roles and neurotoxicity.

Authors:  Rekha C Balachandran; Somshuvra Mukhopadhyay; Danielle McBride; Jennifer Veevers; Fiona E Harrison; Michael Aschner; Erin N Haynes; Aaron B Bowman
Journal:  J Biol Chem       Date:  2020-03-18       Impact factor: 5.157

Review 6.  Genetic Disorders of Manganese Metabolism.

Authors:  S Anagianni; K Tuschl
Journal:  Curr Neurol Neurosci Rep       Date:  2019-05-14       Impact factor: 5.081

7.  Identification of Three Small Molecules That Can Selectively Influence Cellular Manganese Levels in a Mouse Striatal Cell Model.

Authors:  Kyle J Horning; Xueqi Tang; Morgan G Thomas; Michael Aschner; Aaron B Bowman
Journal:  Molecules       Date:  2021-02-22       Impact factor: 4.411

Review 8.  Inherited Manganese Disorders and the Brain: What Neurologists Need to Know.

Authors:  Dipti Kapoor; Divyani Garg; Suvasini Sharma; Vinay Goyal
Journal:  Ann Indian Acad Neurol       Date:  2021-02-05       Impact factor: 1.383

9.  Hypermanganesemia due to mutations in SLC39A14: further insights into Mn deposition in the central nervous system.

Authors:  L Marti-Sanchez; J D Ortigoza-Escobar; A Darling; M Villaronga; H Baide; M Molero-Luis; M Batllori; M I Vanegas; J Muchart; L Aquino; R Artuch; A Macaya; M A Kurian; Pérez Dueñas
Journal:  Orphanet J Rare Dis       Date:  2018-01-30       Impact factor: 4.123

Review 10.  The Functions of ZIP8, ZIP14, and ZnT10 in the Regulation of Systemic Manganese Homeostasis.

Authors:  James W W Winslow; Kirsten H Limesand; Ningning Zhao
Journal:  Int J Mol Sci       Date:  2020-05-07       Impact factor: 5.923

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