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FoxP2 Gene | Speech Disorders | Childhood Verbal Dyspraxia скачать в хорошем качестве

FoxP2 Gene | Speech Disorders | Childhood Verbal Dyspraxia 3 years ago

foxp2 gene

fox gene

fox gene disorders

speech disorders

developmental childhood dyspraxia

dyspraxia

aspraxia

fork head protein

basal ganglia

inferior frontal gyrus

putamen

brocas area

fox gene mutation

r553h mutation

r328x

motor speech development

missense mutations

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FoxP2 Gene | Speech Disorders | Childhood Verbal Dyspraxia

Forkhead box protein P2 (FOXP2) is a protein that, in humans, is encoded by the FOXP2 gene. FOXP2 is a member of the forkhead box family of transcription factors, proteins that regulate gene expression by binding to DNA. It is expressed in the brain, heart, lungs and digestive system. FOXP2 is found in many vertebrates, where it plays an important role in mimicry in birds (such as birdsong) and echolocation in bats. FOXP2 is also required for the proper development of speech and language in humans. In humans, mutations in FOXP2 cause the severe speech and language disorder developmental verbal dyspraxia.Studies of the gene in mice and songbirds indicate that it is necessary for vocal imitation and the related motor learning.[ Outside the brain, FOXP2 has also been implicated in development of other tissues such as the lung and digestive system. Initially identified in 1998 as the genetic cause of a speech disorder in a British family designated the KE family, FOXP2 was the first gene discovered to be associated with speech and language and was subsequently dubbed "the language gene".However, other genes are necessary for human language development, and a 2018 analysis confirmed that there was no evidence of recent positive evolutionary selection of FOXP2 in humans. s a FOX protein, FOXP2 contains a forkhead-box domain. In addition, it contains a polyglutamine tract, a zinc finger and a leucine zipper. The protein attaches to the DNA of other proteins and controls their activity through the forkhead-box domain. Only a few targeted genes have been identified, however researchers believe that there could be up to hundreds of other genes targeted by the FOXP2 gene. The forkhead box P2 protein is active in the brain and other tissues before and after birth, many studies show that it is paramount for the growth of nerve cells and transmission between them. The FOXP2 gene is also involved in synaptic plasticity, making it imperative for learning and memory

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