نتایج جستجو برای: smn2 protein

تعداد نتایج: 1234838  

2014
Miho Maeda Ashlee W. Harris Brewster F. Kingham Casey J. Lumpkin Lynn M. Opdenaker Suzanne M. McCahan Wenlan Wang Matthew E. R. Butchbach

Proximal spinal muscular atrophy (SMA) is an early onset, autosomal recessive motor neuron disease caused by loss of or mutation in SMN1 (survival motor neuron 1). Despite understanding the genetic basis underlying this disease, it is still not known why motor neurons (MNs) are selectively affected by the loss of the ubiquitously expressed SMN protein. Using a mouse embryonic stem cell (mESC) m...

Journal: :Human molecular genetics 2010
Matthew E R Butchbach Jasbir Singh Margrét Thorsteinsdóttir Luciano Saieva Elzbieta Slominski John Thurmond Thorkell Andrésson Jun Zhang Jonathan D Edwards Louise R Simard Livio Pellizzoni Jill Jarecki Arthur H M Burghes Mark E Gurney

Proximal spinal muscular atrophy (SMA), one of the most common genetic causes of infant death, results from the selective loss of motor neurons in the spinal cord. SMA is a consequence of low levels of survival motor neuron (SMN) protein. In humans, the SMN gene is duplicated; SMA results from the loss of SMN1 but SMN2 remains intact. SMA severity is related to the copy number of SMN2. Compound...

2017
Valérie Robin Graziella Griffith John-Paul L. Carter Christian J. Leumann Luis Garcia Aurélie Goyenvalle

Spinal muscular atrophy (SMA) is a recessive disease caused by mutations in the SMN1 gene, which encodes the protein survival motor neuron (SMN), whose absence dramatically affects the survival of motor neurons. In humans, the severity of the disease is lessened by the presence of a gene copy, SMN2. SMN2 differs from SMN1 by a C-to-T transition in exon 7, which modifies pre-mRNA splicing and pr...

Journal: :Human mutation 2005
Yi-Ning Su Chia-Cheng Hung Hung Li Chien-Nan Lee Wen-Fang Cheng Po-Nien Tsao Ming-Cheng Chang Chia-Li Yu Wu-Shiun Hsieh Win-Li Lin Su-Ming Hsu

Autosomal recessive spinal muscular atrophy (SMA) is a common, fatal neuromuscular disease caused by homozygous absence of the SMN1 gene in approximately 94% of patients. However, a highly homologous SMN2 gene exists in the same chromosome interval, centromeric to SMN1, and hampers detection of SMN1. We present a new, rapid, simple, and highly reliable method for detecting the SMN1 deletion/con...

Journal: :Human molecular genetics 2005
Jill Jarecki Xiaocun Chen Alexandra Bernardino Daniel D Coovert Michael Whitney Arthur Burghes Jeffrey Stack Brian A Pollok

We have exploited the existence of a second copy of the human SMN gene (SMN2) to develop a high-throughput screening strategy to identify potential small molecule therapeutics for the genetic disease spinal muscular atrophy (SMA), which is caused by the loss of the SMN1 gene. Our screening process was designed to identify synthetic compounds that increase the total amount of full-length SMN mes...

Journal: :Human molecular genetics 2013
Lutz Garbes Ludwig Heesen Irmgard Hölker Tim Bauer Julia Schreml Katharina Zimmermann Michaela Thoenes Michael Walter John Dimos Michael Peitz Oliver Brüstle Raoul Heller Brunhilde Wirth

Functional loss of SMN1 causes proximal spinal muscular atrophy (SMA), the most common genetic condition accounting for infant lethality. Hence, the hypomorphic copy gene SMN2 is the only resource of functional SMN protein in SMA patients and influences SMA severity in a dose-dependent manner. Consequently, current therapeutic approaches focus on SMN2. Histone deacetylase inhibitors (HDACi), su...

ژورنال: :مجله دانشگاه علوم پزشکی زنجان 0
غلامرضا بهرامی منجمی ْgr bahrami monajemi دانشگاه تربیت مدرس مهرداد نوروزی نیا m noruzinia دانشگاه تربیت مدرس سید حسن تنکابنی sh tonekaboni دانشگاه علوم پزشکی شهید بهشتی تهران

زمینه و هدف: شدت فنوتیپ بیماری آتروفی عضلانی نخاعی دارای ارتباطی معکوس با سطح بیان ژن smn2 است ولی این رابطه مطلق نیست، به همین دلیل در حال حاضر هیچ درمان موثری برای این بیماری وجود ندارد. بنابراین به جز بیان ژن smn2، دخالت برخی عوامل تعدیل کننده اضافی در شدت این بیماری پیشنهاد شده است. در این تحقیق، اثر والپروئیک اسید به عنوان یک داروی فعال کننده stat5 نه تنها بر روی وضعیت بیان smn2 بلکه بر رو...

2015
Vittoria Pagliarini Laura Pelosi Maria Blaire Bustamante Annalisa Nobili Maria Grazia Berardinelli Marcello D’Amelio Antonio Musarò Claudio Sette

Spinal muscular atrophy (SMA) is a neurodegenerative disease caused by loss of motor neurons in patients with null mutations in the SMN1 gene. The almost identical SMN2 gene is unable to compensate for this deficiency because of the skipping of exon 7 during pre-messenger RNA (mRNA) processing. Although several splicing factors can modulate SMN2 splicing in vitro, the physiological regulators o...

Journal: :Therapeutic advances in neurological disorders 2010
Douglas M Sproule Petra Kaufmann

Spinal muscular atrophy (SMA), a potentially devastating disease marked by progressive weakness and muscle atrophy resulting from the dysfunction and loss of motor neurons of the spinal cord, has emerged in recent years as an attractive target for therapeutic intervention. Caused by a homozygous mutation to the Survival of Motor Neurons 1 (SMN1) gene on chromosome 5q, the severity of the clinic...

Journal: :Human molecular genetics 2014
Erkan Y Osman Madeline R Miller Kate L Robbins Abby M Lombardi Arleigh K Atkinson Amanda J Brehm Christian L Lorson

Spinal muscular atrophy (SMA) is a neurodegenerative disease caused by the loss of Survival Motor Neuron-1 (SMN1). In all SMA patients, a nearly identical copy gene called SMN2 is present, which produces low levels of functional protein owing to an alternative splicing event. To prevent exon-skipping, we have targeted an intronic repressor, Element1 (E1), located upstream of SMN2 exon 7 using M...

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