首页> 外文期刊>Peptides: An International Journal >Identification of mature nocistatin and nociceptin in human brain and cerebrospinal fluid by mass spectrometry combined with affinity chromatography and HPLC.
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Identification of mature nocistatin and nociceptin in human brain and cerebrospinal fluid by mass spectrometry combined with affinity chromatography and HPLC.

机译:质谱结合亲和色谱和HPLC鉴定人脑和脑脊液中成熟的诺西他汀和诺西汀。

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摘要

Nocistatin (NST) and nociceptin/orphanin FQ (NCP) are two important bio-peptides derived from the precursor protein prepronociceptin (ppNCP), involved in several central nervous system (CNS) functions including pain transmission. Since the actual form of human NST in CNS is not fully characterized, we studied the structure of NST from human brain tissue and cerebrospinal fluid (CSF) samples. NST and NCP were isolated from human brain and CSF samples by affinity chromatography combined with HPLC. Mass spectrometry was used for the identification and characterization of the peptides. The total NST immunoreactivity was detected as 11.5+/-2.3 pmol/g tissue for the brain and 0.44 pmol/ml for the pooled CSF sample after the HPLC purification by radioimmunoassay. The presence of two different forms of mature nocistatin (NST-17 and NST-30) and a possible N-terminal methionine cleaved NST-29 were confirmed by both radioimmunoassay and mass spectrometry. Affinity chromatography, HPLC and mass spectrometry methods used in this study were highly sensitive and suitable for identification of actual chemical structures and quantification of very small amounts of peptides in biological samples. The present findings may help further for search for new treatment of neuropathic pain, which is often poorly managed by current therapies.
机译:诺西他汀(NST)和Nociceptin / orphanin FQ(NCP)是衍生自前体蛋白prepronociceptin(ppNCP)的两个重要生物肽,涉及多种中枢神经系统(CNS)功能,包括疼痛传递。由于中枢神经系统中人类NST的实际形式尚未完全表征,因此我们从人脑组织和脑脊液(CSF)样品中研究了NST的结构。通过亲和色谱和HPLC从人脑和CSF样品中分离NST和NCP。质谱用于鉴定和表征肽。在通过放射免疫分析法进行HPLC纯化后,总的NST免疫反应性对大脑而言为11.5 +/- 2.3 pmol / g组织,对于合并的CSF样品而言为0.44 pmol / ml。放射免疫分析法和质谱法均证实了两种不同形式的成熟诺西他汀(NST-17和NST-30)以及可能的N末端甲硫氨酸裂解的NST-29的存在。本研究中使用的亲和色谱法,HPLC和质谱法高度灵敏,适用于鉴定实际化学结构和定量生物样品中极少量的肽。目前的发现可能有助于进一步寻找新的神经性疼痛治疗方法,这种方法通常在当前治疗方法中管理不善。

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