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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >PURA , the gene encoding Pur-alpha, member of an ancient nucleic acid-binding protein family with mammalian neurological functions
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PURA , the gene encoding Pur-alpha, member of an ancient nucleic acid-binding protein family with mammalian neurological functions

机译:pura,编码pur-α的基因,古核酸结合蛋白家族的成员哺乳动物神经功能

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Abstract The PURA gene encodes Pur-alpha, a 322 amino acid protein with repeated nucleic acid binding domains that are highly conserved from bacteria through humans. PUR genes with a single copy of this domain have been detected so far in spirochetes and bacteroides. Lower eukaryotes possess one copy of the PUR gene, whereas chordates possess 1 to 4 PUR family members. Human PUR genes encode Pur-alpha (Pura), Pur-beta (Purb) and two forms of Pur-gamma (Purg). Pur-alpha is a protein that binds specific DNA and RNA sequence elements. Human PURA , located at chromosome band 5q31, is under complex control of three promoters. The entire protein coding sequence of PURA is contiguous within a single exon. Several studies have found that overexpression or microinjection of Pura inhibits anchorage-independent growth of oncogenically transformed cells and blocks proliferation at either G1-S or G2-M checkpoints. Effects on the cell cycle may be mediated by interaction of Pura with cellular proteins including Cyclin/Cdk complexes and the Rb tumor suppressor protein. PURA knockout mice die shortly after birth with effects on brain and hematopoietic development. In humans environmentally induced heterozygous deletions of PURA have been implicated in forms of myelodysplastic syndrome and progression to acute myelogenous leukemia. Pura plays a role in AIDS through association with the HIV-1 protein, Tat. In the brain Tat and Pura association in glial cells activates transcription and replication of JC polyomavirus, the agent causing the demyelination disease, progressive multifocal leukoencephalopathy. Tat and Pura also act to stimulate replication of the HIV-1 RNA genome. In neurons Pura accompanies mRNA transcripts to sites of translation in dendrites. Microdeletions in the PURA locus have been implicated in several neurological disorders. De novo PURA mutations have been related to a spectrum of phenotypes indicating a potential PURA syndrome. The nucleic acid, G-rich Pura binding element is amplified as expanded polynucleotide repeats in several brain diseases including fragile X syndrome and a familial form of amyotrophic lateral sclerosis/fronto-temporal dementia. Throughout evolution the Pura protein plays a critical role in survival, based on conservation of its nucleic acid binding properties. These Pura properties have been adapted in higher organisms to the as yet unfathomable development of the human brain.
机译:摘要Pura基因编码pur-α,一种322个氨基酸蛋白,其重复的核酸结合结构域,这些域通过人类从细菌中高度保守。目前已经检测到具有单一副本的PUR基因在螺旋体和杆状体中被检测到。较低的真核生物具有PUR基因的一种拷贝,而弦则具有1至4个PUR家族成员。人PUR基因编码pur-α(pura),pur-beta(purb)和两种形式的pur-gamma(purg)。 pur-α是结合特异性DNA和RNA序列元素的蛋白质。位于染色体带5Q31的人类pura,是在三个启动子的复杂控制下。 Pura的整个蛋白质编码序列在单个外显子内是连续的。几项研究发现,Pura的过表达或显微注射抑制了无血管生成转化细胞的锚定生长,并在G1-S或G2-M检查点嵌段增殖。可以通过Pura与细胞蛋白质的相互作用介导对细胞周期的影响,所述细胞蛋白质包括细胞周期蛋白/ CDK络合物和RB肿瘤抑制蛋白。 Pura敲除小鼠在出生后不久死于对脑和造血发育的影响。在人类中,无忧的杂合缺失pura含有髓细胞增生综合征和进展的形式涉及急性髓性白血病。 Pura通过与HIV-1蛋白,TAT联系起着艾滋病的作用。在胶质细胞中的脑TAT和Pura关联中激活JC Polyomavirus的转录和复制,代理导致脱髓鞘疾病,进行逐渐多灶性白血病。 TAT和Pura还可以刺激HIV-1 RNA基因组的复制。在神经元pura伴有MRNA转录物在树突中的翻译部位。 Pura基因座中的微缺蛋卷在几种神经障碍中涉及。 De Novo Pura突变与表型表型的光谱有关,表明潜在的pura综合症。富含核酸的核酸,富含G的pura结合元素,如脑疾病中的膨胀多核苷酸重复,包括脆弱的X综合征和肌萎缩横向硬化/前颞痴呆的家族形式。在整个进化过程中,Pura蛋白基于其核酸结合性能的保护,在存活中起着关键作用。这些pura属性已在较高的生物体中适应人类脑的尚未难以发展。

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