CAMTA1 is a useful immunohistochemical marker for diagnosing epithelioid haemangioendothelioma
HISTOPATHOLOGY
Authors: Shibuya, Ryo; Matsuyama, Atsuji; Shiba, Eisuke; Harada, Hiroshi; Yabuki, Kei; Hisaoka, Masanori
Abstract
Aims: The diagnosis of epithelioid haemangioendothelioma (EHE) is usually straightforward, based on characteristic histological features. However, it is sometimes difficult to differentiate EHE from a variety of other tumours with epithelioid morphology. The WW domain-containing transcription regulator 1-calmodulin-binding transcription activator 1 (WWTR1-CAMTA1) fusion gene, resulting in the overexpression of CAMTA1, is demonstrated in approximately 90% of EHEs, and the yes-associated protein 1-transcription factor E3 (YAP1-TFE3) fusion gene, associated with the strong and diffuse nuclear expression of TFE3, is present in another small subset of EHEs. The aim of our study was to examine CAMTA1 expression in EHEs and a variety of other tumours to evaluate its diagnostic utility, and to analyse TFE3 expression status in EHEs. Methods and results: Immunohistochemistry was performed on 16 EHEs, including five cases with CAMTA1 rearrangement and 276 non-EHE tumours. Fourteen of 16 EHEs and only one case of ductal carcinoma of the breast were positive for CAMTA1 and its expression was focal and weak in the latter (sensitivity 87.5%, specificity 99.6%). TFE3 expression was expressed focally and weakly in three (19%) EHEs (two with the CAMTA1 rearrangement). Conclusions: Nuclear CAMTA1 expression is sensitive and highly specific for EHE and can be applied to diagnostic immunohistochemistry in epithelioid tumours.
Modeling TFE renal cell carcinoma in mice reveals a critical role of WNT signaling
ELIFE
Authors: Calcagni, Alessia; Kors, Lotte; Verschuren, Eric; De Cegli, Rossella; Zampelli, Nicolina; Nusco, Edoardo; Confalonieri, Stefano; Bertalot, Giovanni; Pece, Salvatore; Settembre, Carmine; Malouf, Gabriel G.; Leemans, Jaklien C.; de Heer, Emile; Salvatore, Marco; Peters, Dorien J. M.; Di Fiore, Pier Paolo; Ballabio, Andrea
Abstract
TFE-fusion renal cell carcinomas (TFE-fusion RCCs) are caused by chromosomal translocations that lead to overexpression of the TFEB and TFE3 genes (Kauffman et al., 2014). The mechanisms leading to kidney tumor development remain uncharacterized and effective therapies are yet to be identified. Hence, the need to model these diseases in an experimental animal system (Kauffman et at, 2014). Here, we show that kidney-specific TFEB overexpression in transgenic mice, resulted in renal clear cells, multi-layered basement membranes, severe cystic pathology, and ultimately papillary carcinomas with hepatic metastases. These features closely recapitulate those observed in both TFEB- and TFE3-mediated human kidney tumors. Analysis of kidney samples revealed transcriptional induction and enhanced signaling of the WNT beta-catenin pathway. WNT signaling inhibitors normalized the proliferation rate of primary kidney cells and significantly rescued the disease phenotype in vivo. These data shed new light on the mechanisms underlying TFE-fusion RCCs and suggest a possible therapeutic strategy based on the inhibition of the WNT pathway.