STK11基因中一种新的终止密码子突变与Peutz-Eghers综合征和癌症风险升高有关:一项病例研究。

Q3 Medicine
Binazir Khanabadi, Diba Najafgholizadeh Seyfi, Leili Rejali, Mohammad Yaghoob Taleghani, Mehdi Tavallaei, Shabnam Shahrokh, Elahe Daskar Abkenar, Fatemeh Naderi Noukabadi, Hamid Asadzadeh Aghdaei, Ehsan Nazemalhosseini Mojarad
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引用次数: 0

摘要

根据对Peutz-Jeghers综合征(PJS)患者的分析,丝氨酸苏氨酸激酶11(STK11)是一种已知的肿瘤抑制基因,参与细胞极化、细胞凋亡调节和DNA损伤反应。在这项病例报告研究中,我们检测了一名42岁女性的STK11基因测序,该女性患有粘膜新色素沉着和阳性家族史。内镜和结肠镜检查显示整个胃/结肠有>1000个息肉(PJ型错构瘤)。胃中较大的息肉被切除,小肠成像检测到多个空肠/回肠小息肉。从测序结果中公布的数据显示,外显子1至5发生了五次改变。据报道,终止密码子的主要突变是由氨基酸色氨酸(TRP)转化为酪氨酸(TER)。TGG密码子通过突变转化为TAG。最后,发现STK11终止密码子中的另一个新突变为“从头”变体。据预测,终止密码子突变使受影响的人易患结直肠癌癌症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A novel stop codon mutation in STK11 gene is associated with Peutz-Jeghers Syndrome and elevated cancer risk: a case study.

A novel stop codon mutation in STK11 gene is associated with Peutz-Jeghers Syndrome and elevated cancer risk: a case study.

A novel stop codon mutation in STK11 gene is associated with Peutz-Jeghers Syndrome and elevated cancer risk: a case study.

A novel stop codon mutation in STK11 gene is associated with Peutz-Jeghers Syndrome and elevated cancer risk: a case study.

Based on the analysis of patients with Peutz-Jeghers syndrome (PJS), Serine threonine kinase11 (STK11) is known as a tumor suppressor gene, which is involved in cell polarization, regulation of apoptosis, and DNA damage response. In this case report study, we examined STK11 gene sequencing in a 42-year-old woman with mucocuta neous pigmentation and positive family history. Endoscopy and colonoscopy showed >1000 polyps throughout the stomach/colon (PJ-type hamartomas). The larger polyp in the stomach was resected and the small bowel imaging detected multiple jejunum/ileum small polyps. The data released from the sequencing results revealed five alterations in exons 1 to 5. The major mutation in stop codon was reported as converted to the amino acid tryptophan (TRP) to tyrosine (TER). The TGG codon was converted to TAG by mutation. Finally, another novel mutation in STK11 stop codon as a 'de novo' variant was seen. It is predicted that stop codon mutations make the affected person susceptible to developing colorectal cancer.

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CiteScore
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