Normal view MARC view ISBD view

Analysis Of Genetic Polymorphism In Exon 6 & 11 Of Glucosidase Beta Acid (Gba) Gene In Gaucher Diseased Patients From Punjab, Pakistan

By: Aysha Arshad (2009-VA-571) | Dr. Muhammad Yasir Zahoor.
Contributor(s): Dr. Muhammad Imran | Dr. Imran Altaf.
Material type: materialTypeLabelBookPublisher: 2015Description: 57p.Subject(s): Department of Molecular Biology and BiotechnologyDDC classification: 2334-T Dissertation note: Gaucher disease (GD) is amajor predominant heterogenic, inherited and metabolic lysosomal storage disorder. It is prompted by an alteration in glucosidase acid beta (GBA) gene. GBA gene encodes a 497 amino acid glucocerebrosidase enzyme. It is a lysosomal hydrolase, present in all mammalian cells membrane that carries the catalysis of complex ubiquitous sphingolipids called glucocerebrosides (GlcCer) into smaller and simpler molecules of sugar and ceramide. The human glucocereborside (GBA) gene is present in highly gene dense area on q arm of 21 chromosome and its fragment length is 7.8kb comprising of 11 exons. A pseudogene is also present in vicinity of GBA gene which shares 96% homology of sequence with functional gene. Genetic recombination and gene conversion among these two GBA genes are responsible for 10-20% GD mutations. >300 mutations of GBA have been described till 2014. GD has three different clinical forms depend on its heterogeneity. These are characterized by the age of onset and with or without the participation of CNS. In this study, 10 blood samples were collected of GD patients from repository at Molecular and Genomic Laboratory located at IBBT department, UVAS Lahore and from Children Hospital Lahore. DNA extraction was done by using organic method from blood samples. Amplification of GBA gene exons 1, 6 and 11 was performed using PCR. PCR products were sequenced using Sanger di-deoxy sequencing method. Different bioinformatics tools were applied for the sequence analysis of exon 1, 6 and 11. We found two variants of GBA gene. A deletion of CT nucleotide repeat in intron 1 was found. We also found a substitutional change of nucleotide T>A in intron 8.
Tags from this library: No tags from this library for this title. Add tag(s)
Log in to add tags.
    average rating: 0.0 (0 votes)
Item type Current location Collection Call number Status Date due Barcode Item holds
Thesis Thesis UVAS Library
Thesis Section
Veterinary Science 2334-T (Browse shelf) Available 2334-T
Total holds: 0

Gaucher disease (GD) is amajor predominant heterogenic, inherited and metabolic lysosomal storage disorder. It is prompted by an alteration in glucosidase acid beta (GBA) gene. GBA gene encodes a 497 amino acid glucocerebrosidase enzyme. It is a lysosomal hydrolase, present in all mammalian cells membrane that carries the catalysis of complex ubiquitous sphingolipids called glucocerebrosides (GlcCer) into smaller and simpler molecules of sugar and ceramide. The human glucocereborside (GBA) gene is present in highly gene dense area on q arm of 21 chromosome and its fragment length is 7.8kb comprising of 11 exons. A pseudogene is also present in vicinity of GBA gene which shares 96% homology of sequence with functional gene. Genetic recombination and gene conversion among these two GBA genes are responsible for 10-20% GD mutations. >300 mutations of GBA have been described till 2014. GD has three different clinical forms depend on its heterogeneity. These are characterized by the age of onset and with or without the participation of CNS.
In this study, 10 blood samples were collected of GD patients from repository at Molecular and Genomic Laboratory located at IBBT department, UVAS Lahore and from Children Hospital Lahore. DNA extraction was done by using organic method from blood samples. Amplification of GBA gene exons 1, 6 and 11 was performed using PCR. PCR products were sequenced using Sanger di-deoxy sequencing method. Different bioinformatics tools were applied for the sequence analysis of exon 1, 6 and 11. We found two variants of GBA gene. A deletion of CT nucleotide repeat in intron 1 was found. We also found a substitutional change of nucleotide T>A in intron 8.

There are no comments for this item.

Log in to your account to post a comment.


Implemented and Maintained by UVAS Library.
For any Suggestions/Query Contact to library or Email:rehana.kousar@uvas.edu.pk Phone:+91 99239068
Website/OPAC best viewed in Mozilla Browser in 1366X768 Resolution.