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EagleBio/A53T Mutant SNCA Protein Monomer/SPR-325

价格
面议
货号:SPR-325
浏览量:127
品牌:EagleBio
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商品描述

A53T Mutant SNCA Protein Monomer

The A53T Mutant SNCA Protein Monomer is For Research Use Only

Specificity: ~14.46 kDa
Species: Human
Expression System: E. coli
Buffer: PBS pH 7.4
Storage Temperature: -80ºC
Alternative Names: Active Human Recombinant A53T Mutant Alpha Synuclein Protein Monomer, A53T mutant alpha synuclein, A53T mutated SNCA, A53T Alpha synuclein monomer, Ala53thr mutant alpha synuclein, Active Alpha synuclein protein, Alpha-synuclein protein, Non-A beta component of AD amyloid protein, Non-A4 component of amyloid precursor protein, NACP protein, SNCA protein, NACP protein, PARK1 protein, Alpha synuclein monomers, SYN protein, Parkinson disease familial 1 Protein

Product manufactured in Canada by StressMarq.


Assay Background

Alpha-Synuclein (SNCA) is expressed predominantly in the brain, where it is concentrated in presynaptic nerve terminals. Alpha-synuclein is highly expressed in the mitochondria of the olfactory bulb, hippocampus, striatum and thalamus. Functionally, it has been shown to significantly interact with tubulin, and may serve as a potential microtubule-associated protein. It has also been found to be essential for normal development of the cognitive functions; inactivation may lead to impaired spatial learning and working memory. SNCA fibrillar aggregates represent the major non A-beta component of Alzheimers disease amyloid plaque, and a major component of Lewy body inclusions, and Parkinson’s disease. Parkinson’s disease (PD) is a common neurodegenerative disorder characterized by the progressive accumulation in selected neurons of protein inclusions containing alpha-synuclein and ubiquitin. The A53T mutation is a missense point mutation where alanine is replaced by threonine at the 53rd amino acid. This mutation has been linked to early-onset Parkinson’s Disease and increased rates of alpha synuclein fibrillization.


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EagleBio的5α-雄甾烷-3α,17β-二醇葡糖醛酸化物是C19类固醇,缩写为3α-DiolG,5α二醇G或简称为α二醇G。它主要作为睾丸激素和二氢睾丸激素(DHT)的代谢产物生产。它主要在目标外围组织(例如皮肤)中产生,尤其是在毛囊周围。大量的3α-DiolG刺激会导致过多的头发形成,特别是在女性通常不存在头发的地方。近年来,在研究患有特发性多毛症的妇女的临床研究人员中,人们对这种类固醇的测量越来越感兴趣。已知是3α-DiolG前体的类固醇包括脱氢表雄酮(DHEA),硫酸脱氢表雄酮(DHEAS),二氢睾丸酮(DHT),雄烯二酮和睾丸激素。已显示只有3α-DiolG随多毛症增加而随治疗减少。这种相关性在多囊卵巢综合征(PCO)患者中也得到了证明。3α-DiolG的测定因此被证明是多种方式的有用指标,包括监测特发性多毛症和PCO妇女的治疗进展。此外,接受环孢霉素A治疗的糖尿病患者(无论男女)均显示3α-DiolG水平升高,这种副作用导致以前无毛的区域出现了头发。3α-DiolG的测定因此被证明是多种方式的有用指标,包括监测特发性多毛症和PCO妇女的治疗进展。此外,接受环孢霉素A治疗的糖尿病患者(无论男女)均显示3α-DiolG水平升高,这种副作用导致以前无毛的区域出现了头发。3α-DiolG的测定因此被证明是多种方式的有用指标,包括监测特发性多毛症和PCO妇女的治疗进展。此外,接受环孢霉素A治疗的糖尿病患者(无论男女)均显示3α-DiolG水平升高,这种副作用导致以前无毛的区域出现了头发。