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福尔马林固定与抗原修复的分子机制

A molecular mechanism of formalin fixation and antigen retrieval.

作者信息

Sompuram Seshi R, Vani Kodela, Messana Elizabeth, Bogen Steven A

机构信息

Department of Pathology and Laboratory Medicine, Boston University School of Medicine, MA, USA.

出版信息

Am J Clin Pathol. 2004 Feb;121(2):190-9. doi: 10.1309/BRN7-CTX1-E84N-WWPL.

Abstract

Despite the popularity of antigen-retrieval techniques, the precise molecular mechanism underlying the process remains enigmatic. We examined the molecular features underlying the loss of immunoreactivity following formalin fixation, with subsequent recovery by antigen retrieval. To do this, we first created a molecular model using short peptides that mimic the antibody-binding site of common clinical protein targets. The advantage of this model is that we know the amino acid sequence in and around the antibody-binding site. We observed that some, not all, of the peptides exhibited the formalin-fixation and antigen-retrieval phenomenon. Other peptides did not lose their ability to be recognized by antibody, even after prolonged incubation in formalin. A third, intermediate group exhibited the formalin-fixation and antigen-retrieval phenomenon only if another irrelevant protein was mixed with the peptide before fixation. Amino acid sequence analysis indicates that fixation and antigen retrieval are associated with a tyrosine in or near the antibody-binding site and with an arginine elsewhere, implicating the Mannich reaction as important in fixation and antigen retrieval.

摘要

尽管抗原修复技术很受欢迎,但该过程背后的确切分子机制仍然不明。我们研究了福尔马林固定后免疫反应性丧失以及随后通过抗原修复得以恢复的分子特征。为此,我们首先使用模拟常见临床蛋白质靶点抗体结合位点的短肽创建了一个分子模型。该模型的优势在于我们知道抗体结合位点及其周围的氨基酸序列。我们观察到,部分而非全部肽段呈现出福尔马林固定和抗原修复现象。其他肽段即使在福尔马林中长时间孵育后,仍未丧失被抗体识别的能力。第三组中间类型的肽段,只有在固定前与另一种不相关蛋白质混合时,才会呈现福尔马林固定和抗原修复现象。氨基酸序列分析表明,固定和抗原修复与抗体结合位点内或附近的一个酪氨酸以及其他位置的一个精氨酸有关,这表明曼尼希反应在固定和抗原修复中起重要作用。

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