PO.ET06.05 · 实验与分子治疗
HMGB1过表达是ERG阴性前列腺癌中一项强有力且独立的预后特征
HMGB1 overexpression is a strong and independent prognostic feature in ERG negative prostate cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
高迁移率族蛋白B1(HMGB1)是一种染色质相关蛋白,在DNA损伤修复和基因组稳定性中发挥关键作用,参与DNA复制、转录和染色质重塑。通过影响多条信号通路的活性,HMGB1促成了癌细胞的关键特征,包括增殖、迁移和侵袭、血管生成以及细胞能量代谢。根据肿瘤类型不同,HMGB1表达升高和降低均被发现与不良肿瘤特征和患者不良预后相关。为更好地了解HMGB1表达在前列腺癌中的患病率和临床相关性,采用免疫组化(IHC)分析了一个包含17,747例具有随访数据的前列腺癌样本的组织微阵列。在正常前列腺上皮中,HMGB1在基底细胞中表达强,但在被认为是前列腺腺癌前体细胞的腺泡细胞中仅弱表达。HMGB1 IHC在13,642例癌症中可判读,其中19.9%评为阴性,56.1%为弱,22.4%为中度,1.6%为强。HMGB1染色在携带TMPRSS2:ERG融合的癌症中显著更频繁且更强(91.6%阳性),高于ERG融合阴性肿瘤(70.4%阳性;p<0.0001)。与临床病理特征的比较揭示,高HMGB1表达与晚期pT分期、高Gleason分级、高定量Gleason分级(各p≤0.0001)、淋巴结转移(p=0.0038)和早期PSA复发(p<0.0001)之间存在显著关联。对3,854例ERG阳性和4,751例ERG阴性癌症的亚组分析显示,HMGB1表达的预后影响完全由ERG阴性组驱动(p<0.0001),而HMGB1表达水平在ERG阳性癌症中不影响PSA复发。考虑术前可获得参数(cT、PSA、活检获得的Gleason分级)或术后可获得参数(pT、pN、整个前列腺获得的Gleason分级、R状态)的多项不同多因素分析一致揭示,与已确立的预后参数相比,HMGB1表达在ERG阴性癌症中具有独立的预后影响(p<0.0001)。据此得出结论,HMGB1过表达是ERG阴性前列腺癌一项可能具有临床应用价值的预后特征,可通过IHC评估。ERG状态对HMGB1表达预后作用的显著影响得以被发现,得益于我们患者队列的高维度。其他分子关键改变也有可能在其他癌症类型中关键性地影响已确立预后标志物的作用。
查看英文原文 English abstract
High-mobility group box 1 (HMGB1) is a chromatin-associated protein with a key role in DNA damage repair and genome stability, involved in DNA replication, transcription, and chromatin remodeling. By impacting the activity of multiple signaling pathways HMGB1 contributes to critical characteristics of cancer cells including proliferation, migration and invasion, angiogenesis, and cellular energy metabolism. Depending on the tumor type, both increased and reduced expression of HMGB1 have been found to be linked to unfavorable tumor features and poor patient prognosis. To better understand the prevalence and clinical relevance of HMGB1 expression in prostate cancer, a tissue microarray containing 17,747 prostate cancer samples from patients with follow-up data was analyzed by immunohistochemistry (IHC). In normal prostate epithelium, HMGB1 expression was strong in basal cells but only weak in acinar cells which are considered the precursor cells of prostatic adenocarcinoma. HMGB1 IHC was interpretable in 13,642 cancers and was rated negative in 19.9%, weak in 56.1%, moderate in 22.4%, and strong in 1.6% of tumors. HMGB1 staining was significantly more frequent and more intense in cancers harboring the TMPRSS2:ERG fusion (91.6% positive) than in ERG fusion negative tumors (70.4% positive; p<0.0001). A comparison with clinico-pathological features revealed significant associations between high HMGB1 expression and advanced pT stage, high Gleason grade, high quantitative Gleason grade (p≤0.0001 each), nodal metastases (p=0.0038), and early PSA recurrence (p<0.0001). A subgroup analysis of 3,854 ERG positive and 4,751 ERG negative cancers revealed that the prognostic impact of HMGB1 expression was entirely driven by the ERG negative group (p<0.0001) while the level of HMGB1 expression did not impact PSA recurrence in ERG positive cancers. Several different multivariate analyses considering either preoperatively available (cT, PSA, Gleason grade obtained on biopsies) or postoperatively available (pT, pN, Gleason grade obtained on the entire prostate, R status) parameters unanimously revealed an independent prognostic impact of HMGB1 expression in ERG negative cancers (p<0.0001) if compared to established prognostic parameters. It is concluded that HMGB1 overexpression is a potentially clinically useful prognostic feature of ERG negative prostate cancer which can be assessed by IHC. The striking impact of the ERG status on the prognostic role of HMGB1 expression could be identified due to high dimension of our patient cohort. It may be possible that other molecular key alterations also critically affect the impact of established prognostic markers in other cancer types.
利益披露 Disclosure
N. Heckmann, None..
N. Hertzsprung, None..
C. Bernreuther, None..
E. Burandt, None..
F. Lutz, None..
C. Lühr, None..
C. von Bargen, None..
M. Kluth, None..
M. Tsourlakis, None..
N. Schraps, None..
F. Gehrisch, None..
R. Simon, None..
H. Heinzer, None..
A. Haese, None..
H. Plage, None..
S. Minner, None.
G. Sauter,
MS Validated Antibodies GmbH HMGB1 recombinant rabbit monoclonal antibody, clone HMV317 was provided from MS Validated Antibodies GmbH.
T. Schlomm, None..
M. Graefen, None..
C. Völkl, None.