ID

45800

Descripción

Principal Investigator: Steven Finkbeiner, Gladstone Institutes, San Francesco, CA, USA MeSH: Huntington Disease,Degenerative Hereditary Diseases, Nervous System,Cell Death,Brain Diseases,Ataxia,Chorea,Cognition Disorders,Dyskinesias,Mental Disorders https://www.ncbi.nlm.nih.gov/projects/gap/cgi-bin/study.cgi?study_id=phs001071 The goal of our studies is to identify genetic modifiers of neurodegeneration in Huntington's disease (HD). HD is caused by expansion of CAG repeats in the huntingtin (Htt) gene, with longer stretches often leading to more rapid disease onset and progression. Yet, for a given number of repeats, the age of symptom onset can be variable, differing by up to decades. Thus, the age of onset of motor symptoms in HD is only partly explained by the length of the CAG expansion. Available evidence suggests that genetic modifiers contribute to the variation in HD onset. Identifying genetic modifiers is important because they may provide critical insights into HD pathogenesis and reveal key pathways that could be targeted by novel HD therapeutics. This is important since there are no disease-modifying therapies for HD, and mHtt is an unattractive small-molecule drug target. We recruited 21 HD families with varying characteristics of disease progression and age of onset and obtained medical histories, clinical records and DNA samples that were subjected to whole-genome sequencing (WGS). These WGS data describe families of 104 subjects, including HD patients and their unaffected family members. These individuals were selected based on individual clinical histories and family structures that best fit our criteria for expressing potential genetic modifiers. We are testing the hypothesis that novel, rare genetic variants contribute to HD and those genetic modifiers can be identified by WGS.

Link

dbGaP-study=phs001071

Palabras clave

  1. 23/6/23 23/6/23 - Chiara Middel
Titular de derechos de autor

Steven Finkbeiner, Gladstone Institutes, San Francesco, CA, USA

Subido en

23 de junio de 2023

DOI

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Licencia

Creative Commons BY 4.0

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dbGaP phs001071 NINDS Family-Based Whole-Genome Sequencing to Find HD Modifiers

Subject - Consent - Affection Status Information

pht005344
Descripción

pht005344

Alias
UMLS CUI [1,1]
C3846158
Subject ID
Descripción

SUBJECT_ID

Tipo de datos

string

Alias
UMLS CUI [1,1]
C2348585
Consent group as determined by DAC
Descripción

CONSENT

Tipo de datos

text

Alias
UMLS CUI [1,1]
C0021430
UMLS CUI [1,2]
C0441833
Case - control status (HD) of the subject
Descripción

AFFECTION_STATUS

Tipo de datos

text

Alias
UMLS CUI [1,1]
C3274646

Similar models

Subject - Consent - Affection Status Information

Name
Tipo
Description | Question | Decode (Coded Value)
Tipo de datos
Alias
Item Group
pht005344
C3846158 (UMLS CUI [1,1])
SUBJECT_ID
Item
Subject ID
string
C2348585 (UMLS CUI [1,1])
Item
Consent group as determined by DAC
text
C0021430 (UMLS CUI [1,1])
C0441833 (UMLS CUI [1,2])
Code List
Consent group as determined by DAC
CL Item
Subjects did not participate in the study, did not complete a consent document and are included only for the pedigree structure and/or genotype controls, such as HapMap subjects (0)
C5418626 (UMLS CUI [1,1])
C0549184 (UMLS CUI [1,2])
C0009797 (UMLS CUI [1,3])
C0205257 (UMLS CUI [1,4])
C2700399 (UMLS CUI [1,5])
C0030761 (UMLS CUI [1,6])
C5418626 (UMLS CUI [2,1])
C0549184 (UMLS CUI [2,2])
C0009797 (UMLS CUI [2,3])
C0205257 (UMLS CUI [2,4])
C2700399 (UMLS CUI [2,5])
C0017431 (UMLS CUI [2,6])
C4553389 (UMLS CUI [2,7])
CL Item
General Research Use (GRU) (1)
C0021430 (UMLS CUI [1,1])
C0242481 (UMLS CUI [1,2])
Item
Case - control status (HD) of the subject
text
C3274646 (UMLS CUI [1,1])
Code List
Case - control status (HD) of the subject
CL Item
Not Applicable (0)
C1272460 (UMLS CUI [1,1])
CL Item
Affected (1)
C3274647 (UMLS CUI [1,1])
CL Item
Unaffected (2)
C3274648 (UMLS CUI [1,1])
CL Item
Control (3)
C3274648 (UMLS CUI [1,1])

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