不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Life after Cleavage: The Story of a β-Retroviral (MMTV) Signal Peptide-From Murine Lymphoma to Human Breast Cancer.
Life after Cleavage: The Story of a β-Retroviral (MMTV) Signal Peptide-From Murine Lymphoma to Human Breast Cancer.
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近年来,越来越多的证据支持β逆转录病毒小鼠乳腺肿瘤病毒(MMTV)与人类乳腺癌之间存在关联。这一问题仍然引发激烈争议。我们着手利用MMTV包膜前体蛋白的信号肽p14作为策略的关键要素来探讨这一关联。除了其信号肽功能外,p14还具有一些重要的内质网(ER)后靶向特征:(1)它定位于核仁,在那里与参与核仁应激反应调节、核糖体生物发生和p53稳定化(以及其他活动)的关键蛋白(RPL5和B23)结合;(2)p14是一种核输出因子;(3)它表达于感染细胞的细胞表面,因此适用于并已成功用于针对携带MMTV的实验性肿瘤的预防性疫苗接种;(4)使用抗p14单克隆抗体组合或过继性T细胞转移治疗可在体内损害此类肿瘤的生长;(5)p14是一种磷蛋白,由两种不同的丝氨酸激酶内源性磷酸化。两个位点的磷酸化状态决定p14将发挥致癌功能还是抑瘤功能;(6)基因(RPL5、ErbB4)的转录激活与MMTV的致癌潜力相关;(7)最后,多克隆抗p14抗体已应用于使用福尔马林固定石蜡包埋切片的乳腺癌病例的免疫组织化学分析,支持MMTV与该疾病的关联。
综上所述,上述发现构成了通往MMTV相关乳腺癌诊断及可能的预防和治疗的路线图。
An increasing body of evidence in recent years supports an association of the betaretrovirus mouse mammary tumor virus (MMTV) with human breast cancer. This is an issue that still raises heated controversy.
We have come to address this association using the signal peptide p14 of the MMTV envelope precursor protein as a key element of our strategy.
In addition to its signal peptide function, p14 has some significant post endoplasmic reticulum (ER)-targeting characteristics: (1) it localizes to nucleoli where it binds key proteins (RPL5 and B23) involved (among other activities) in the regulation of nucleolar stress response, ribosome biogenesis and p53 stabilization; (2) p14 is a nuclear export factor; (3) it is expressed on the cell surface of infected cells, and as such, is amenable to, and successfully used, in preventive vaccination against experimental tumors that harbor MMTV; (4) the growth of such tumors is impaired in vivo using a combination of monoclonal anti-p14 antibodies or adoptive T-cell transfer treatments; (5) p14 is a phospho-protein endogenously phosphorylated by two different serine kinases.
The phosphorylation status of the two sites determines whether p14 will function in an oncogenic or tumor-suppressing capacity; (6) transcriptional activation of genes (RPL5, ErbB4) correlates with the oncogenic potential of MMTV; (7) finally, polyclonal anti-p14 antibodies have been applied in immune histochemistry analyses of breast cancer cases using formalin fixed paraffin-embedded sections, supporting the associations of MMTV with the disease.
Taken together, the above findings constitute a road map towards the diagnosis and possible prevention and treatment of MMTV-associated breast cancer.
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