The UGT2B17 gene polymorphism and bone mineral density in puberty.

BACKGROUND: The uridine diphosphate-glucuronosyltransferase B17 is important for the excretion and thereby inactivation of testosterone. Testosterone is important for the bone growth in puberty. Low values of this hormone can cause male hypogonadism. Here we determine if there is any relationship be...

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Main Author: Sohail, Isma
Other Authors: Jens Petter Berg
Format: Master Thesis
Language:English
Published: 2008
Subjects:
Online Access:http://hdl.handle.net/10852/29481
http://urn.nb.no/URN:NBN:no-20783
id ftoslouniv:oai:www.duo.uio.no:10852/29481
record_format openpolar
institution Open Polar
collection Universitet i Oslo: Digitale utgivelser ved UiO (DUO)
op_collection_id ftoslouniv
language English
topic medisinsk biokjemi
VDP::726
spellingShingle medisinsk biokjemi
VDP::726
Sohail, Isma
The UGT2B17 gene polymorphism and bone mineral density in puberty.
topic_facet medisinsk biokjemi
VDP::726
description BACKGROUND: The uridine diphosphate-glucuronosyltransferase B17 is important for the excretion and thereby inactivation of testosterone. Testosterone is important for the bone growth in puberty. Low values of this hormone can cause male hypogonadism. Here we determine if there is any relationship between the UGT2B17 polymorphism and bone growth in puberty. Our agenda was to find if the distribution of the genotypes (insertion/insertion, insertion/deletion and deletion/deletion) were different for the groups with the highest increase in bone mass. Also we wanted to find out if there was any relationship between the UGT2B17 polymorphism and male hypogonadism. At last we studied if the polymorphism is associated with postmenopausal bone mass and loss. METHODS: The DNA samples used in this study were selected from three different groups 1) a cohort of children and adolescents recruited for studies of bone growth by Prof. Jens P Berg, Hormone Laboratory, Aker university hospital and UiO, 2) a substudy of male hypogonadism in the fourth survey of the Tromsø study by Prof. Johan Svartberg, UNN and UiTø, and 3) a study of postmenopausal bone loss (BUS-study) by Prof. Jan A. Falch, Endocrine Clinic, Aker university hospital and UiO. Genotyping was performed using primers for the insertion and deletion gene. The products were amplified using polymerase chain reaction (PCR) and separated on gel. RESULTS: There was a correlation between the gain in bone mineral density ultradistal forearm (BMDud) for boys in the puberty and the UGT2B17 polymorphism (p=0,009). The gain in BMDud was higher in boys homozygous for the UGT2B17 deletion polymorphism (0.100±0.037) compared with homozygotes for the insertion polymorphism (0.060±0.040) and heterozygotes (0.071±0.041). A statistically significant relationship was found between the UGT2B17 polymorphism and BMD of trochanter major (p=0.017) and the BMD of total hip (p=0.016) for the whole group. The BMD of trochanter major showed higher values for the UGT2B17 deletion/deletion genotype (0.845±0.147) compared with the insertion/insertion genotype (0.786±0.115) and heterozygotes (0.767±0.119).Additionally, BMD of the total hip also showed higher values for the UGT2B17 deletion/deletion genotype (1.05±0.155) compared with the insertion/insertion genotype (0.992±0.131) and heterozygotes (0.962±0.138). The association between BMD of trochanter major and the UGT2B17 polymorphism was also found for the boys analysed separately (p=0.02). There was also a statistically significant higher value for the UGT2B17 deletion/deletion genotype (0.904±0.157) compared with the insertion/insertion genotype (0.791±0.129) and heterozygotes (0.788±0.129). Substudy 2: There was no association between male hypogonadism and the UGT2B17 polymorphism. Substudy 3: There was no association between postmenopausal bone mass and loss and the UGT2B17 gene polymorphism. DISCUSSION: The UGT2B17 gene polymorphism is playing a role in determining the bone mineral density in the puberty. The deletion/deletion polymorphism is associated with a higher serum IGF-1 value again stimulates to a higher bone mineral density in the puberty".
author2 Jens Petter Berg
format Master Thesis
author Sohail, Isma
author_facet Sohail, Isma
author_sort Sohail, Isma
title The UGT2B17 gene polymorphism and bone mineral density in puberty.
title_short The UGT2B17 gene polymorphism and bone mineral density in puberty.
title_full The UGT2B17 gene polymorphism and bone mineral density in puberty.
title_fullStr The UGT2B17 gene polymorphism and bone mineral density in puberty.
title_full_unstemmed The UGT2B17 gene polymorphism and bone mineral density in puberty.
title_sort ugt2b17 gene polymorphism and bone mineral density in puberty.
publishDate 2008
url http://hdl.handle.net/10852/29481
http://urn.nb.no/URN:NBN:no-20783
geographic Tromsø
geographic_facet Tromsø
genre Tromsø
genre_facet Tromsø
op_relation http://urn.nb.no/URN:NBN:no-20783
Sohail, Isma. The UGT2B17 gene polymorphism and bone mineral density in puberty. Prosjektoppgave, University of Oslo, 2008
http://hdl.handle.net/10852/29481
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URN:NBN:no-20783
86715
Fulltext https://www.duo.uio.no/bitstream/handle/10852/29481/4/ProsjektxSohail.pdf
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spelling ftoslouniv:oai:www.duo.uio.no:10852/29481 2023-05-15T18:35:07+02:00 The UGT2B17 gene polymorphism and bone mineral density in puberty. Sohail, Isma Jens Petter Berg 2008 http://hdl.handle.net/10852/29481 http://urn.nb.no/URN:NBN:no-20783 eng eng http://urn.nb.no/URN:NBN:no-20783 Sohail, Isma. The UGT2B17 gene polymorphism and bone mineral density in puberty. Prosjektoppgave, University of Oslo, 2008 http://hdl.handle.net/10852/29481 info:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&rft.au=Sohail, Isma&rft.title=The UGT2B17 gene polymorphism and bone mineral density in puberty.&rft.inst=University of Oslo&rft.date=2008&rft.degree=Prosjektoppgave URN:NBN:no-20783 86715 Fulltext https://www.duo.uio.no/bitstream/handle/10852/29481/4/ProsjektxSohail.pdf medisinsk biokjemi VDP::726 Master thesis Prosjektoppgave 2008 ftoslouniv 2021-10-27T22:32:30Z BACKGROUND: The uridine diphosphate-glucuronosyltransferase B17 is important for the excretion and thereby inactivation of testosterone. Testosterone is important for the bone growth in puberty. Low values of this hormone can cause male hypogonadism. Here we determine if there is any relationship between the UGT2B17 polymorphism and bone growth in puberty. Our agenda was to find if the distribution of the genotypes (insertion/insertion, insertion/deletion and deletion/deletion) were different for the groups with the highest increase in bone mass. Also we wanted to find out if there was any relationship between the UGT2B17 polymorphism and male hypogonadism. At last we studied if the polymorphism is associated with postmenopausal bone mass and loss. METHODS: The DNA samples used in this study were selected from three different groups 1) a cohort of children and adolescents recruited for studies of bone growth by Prof. Jens P Berg, Hormone Laboratory, Aker university hospital and UiO, 2) a substudy of male hypogonadism in the fourth survey of the Tromsø study by Prof. Johan Svartberg, UNN and UiTø, and 3) a study of postmenopausal bone loss (BUS-study) by Prof. Jan A. Falch, Endocrine Clinic, Aker university hospital and UiO. Genotyping was performed using primers for the insertion and deletion gene. The products were amplified using polymerase chain reaction (PCR) and separated on gel. RESULTS: There was a correlation between the gain in bone mineral density ultradistal forearm (BMDud) for boys in the puberty and the UGT2B17 polymorphism (p=0,009). The gain in BMDud was higher in boys homozygous for the UGT2B17 deletion polymorphism (0.100±0.037) compared with homozygotes for the insertion polymorphism (0.060±0.040) and heterozygotes (0.071±0.041). A statistically significant relationship was found between the UGT2B17 polymorphism and BMD of trochanter major (p=0.017) and the BMD of total hip (p=0.016) for the whole group. The BMD of trochanter major showed higher values for the UGT2B17 deletion/deletion genotype (0.845±0.147) compared with the insertion/insertion genotype (0.786±0.115) and heterozygotes (0.767±0.119).Additionally, BMD of the total hip also showed higher values for the UGT2B17 deletion/deletion genotype (1.05±0.155) compared with the insertion/insertion genotype (0.992±0.131) and heterozygotes (0.962±0.138). The association between BMD of trochanter major and the UGT2B17 polymorphism was also found for the boys analysed separately (p=0.02). There was also a statistically significant higher value for the UGT2B17 deletion/deletion genotype (0.904±0.157) compared with the insertion/insertion genotype (0.791±0.129) and heterozygotes (0.788±0.129). Substudy 2: There was no association between male hypogonadism and the UGT2B17 polymorphism. Substudy 3: There was no association between postmenopausal bone mass and loss and the UGT2B17 gene polymorphism. DISCUSSION: The UGT2B17 gene polymorphism is playing a role in determining the bone mineral density in the puberty. The deletion/deletion polymorphism is associated with a higher serum IGF-1 value again stimulates to a higher bone mineral density in the puberty". Master Thesis Tromsø Universitet i Oslo: Digitale utgivelser ved UiO (DUO) Tromsø