TY - JOUR
T1 - Hutchinson-Gilford Progeria Syndrome
T2 - An Overview of the Molecular Mechanism, Pathophysiology and Therapeutic Approach
AU - Rahman, Md Mominur
AU - Ferdous, Kazi Sayma
AU - Ahmed, Muniruddin
AU - Islam, Mohammad Touhidul
AU - Khan, Md Robin
AU - Perveen, Asma
AU - Ashraf, Ghulam Md
AU - Uddin, Md Sahab
N1 - Publisher Copyright:
© 2021, Bentham Science Publishers. All rights reserved.
PY - 2021/6
Y1 - 2021/6
N2 - Lamin A/C encoded by the LMNA gene is an essential component for maintaining the nuclear structure. Mutation in the lamin A/C leads to a group of inherited disorders is known as laminopathies. In the human body, there are several mutations in the LMNA gene that have been identified. It can affect diverse organs or tissues or can be systemic, causing different diseases. In this review, we mainly focused on one of the most severe laminopathies, Hutchinson-Gilford proge-ria syndrome (HGPS). HGPS is an immensely uncommon, deadly, metameric ill-timed lamino-pathies caused by the abnormal splicing of the LMNA gene and production of an aberrant protein known as progerin. Here, we also presented the currently available data on the molecular mech-anism, pathophysiology, available treatment, and future approaches to this deadly disease. Due to the production of progerin, an abnormal protein leads to an abnormality in nuclear structure, defects in DNA repair, shortening of telomere, and impairment in gene regulation which ultimately results in aging in the early stage of life. Now some treatment options are available for this disease, but a proper understanding of the molecular mechanism of this disease will help to develop a more appropriate treatment which makes it an emerging area of research.
AB - Lamin A/C encoded by the LMNA gene is an essential component for maintaining the nuclear structure. Mutation in the lamin A/C leads to a group of inherited disorders is known as laminopathies. In the human body, there are several mutations in the LMNA gene that have been identified. It can affect diverse organs or tissues or can be systemic, causing different diseases. In this review, we mainly focused on one of the most severe laminopathies, Hutchinson-Gilford proge-ria syndrome (HGPS). HGPS is an immensely uncommon, deadly, metameric ill-timed lamino-pathies caused by the abnormal splicing of the LMNA gene and production of an aberrant protein known as progerin. Here, we also presented the currently available data on the molecular mech-anism, pathophysiology, available treatment, and future approaches to this deadly disease. Due to the production of progerin, an abnormal protein leads to an abnormality in nuclear structure, defects in DNA repair, shortening of telomere, and impairment in gene regulation which ultimately results in aging in the early stage of life. Now some treatment options are available for this disease, but a proper understanding of the molecular mechanism of this disease will help to develop a more appropriate treatment which makes it an emerging area of research.
KW - gene regulation
KW - Hutchinson-Gilford progeria syndrome
KW - Lamin A/C
KW - LMNA
KW - Progeria
KW - progerin
UR - http://www.scopus.com/inward/record.url?scp=85108303258&partnerID=8YFLogxK
U2 - 10.2174/1566523221666210303100805
DO - 10.2174/1566523221666210303100805
M3 - Review article
C2 - 33655857
AN - SCOPUS:85108303258
SN - 1566-5232
VL - 21
SP - 216
EP - 229
JO - Current Gene Therapy
JF - Current Gene Therapy
IS - 3
ER -