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Biology subjects

Okano, S.

Publications and source records attributed to Okano, S..

3 recordsLinked to original sources

Germline ERBB3 mutation in familial non-small cell lung carcinoma: expanding the role of the ErbB family in oncogenesis.

BackgroundLung cancer is the commonest cause of cancer deaths worldwide. Although strongly associated with smoking, predisposition to lung cancer is also heritable with multiple common risk variants identified. Rarely, dominantly inherited non-small-cell lung cancer (NSCLC) has been reported due to somatic mutations in EGFR/ErbB1 and ERBB2. MethodsGermline exome sequencing was performed in a multi-generation family with autosomal dominant NSCLC, including an affected child. Tumour samples were also sequenced. Full-length wild-type (wtErbB3) and mutant ERBB3 (mutErbB3) constructs were transfected into HeLa cells. Protein expression, stability, and sub-cellular localisation were assessed; and cellular proliferation, pAkt/Akt, and pERK levels were determined. ResultsA novel germline variant in ERBB3 (c.1946T>G: p.Iso649Arg), coding for receptor tyrosineprotein kinase erbB-3 (ErbB3), was identified, with appropriate segregation. There was no loss-of-heterozygosity in tumour samples. Both wtErbB3 and mutErbB3 were stably expressed. MutErbB3-transfected cells demonstrated an increased ratio of the 80kD form (which enhances proliferation) compared to the full-length (180kD) form. MutErbB3 and wtErbB3 had similar punctate cytoplasmic localisation pre- and post-EGF stimulation; however, EGFR levels decreased faster post-stimulation in mutErbB3-transfected cells, suggesting more rapid processing of the mutErbB3/EGFR heterodimer. Cellular proliferation was increased in mutErbB3-transfected cells compared to wtErbB3 transfection. MutErbB3-transfected cells also showed decreased pAkt/tAkt ratios and increased pERK/tERK 30 minutes post-stimulation compared to wtErbB3 transfection, demonstrating altered signalling pathway activation by mutErbB3. Cumulatively, these results support this mutation as tumorogenic. ConclusionsThis is the first reported family with a germline ERBB3 mutation causing heritable NSCLC, furthering understanding of the ErbB family pathway in oncogenesis.

genomics

An inverted Caveolin-1 topology defines a novel exosome secreted from prostate cancer cells

Caveolin-1 (Cav1) expression and secretion is associated with prostate cancer (PCa) disease progression but the mechanisms underpinning Cav1 release remain poorly understood. Numerous studies have shown Cav1 can be secreted within exosome-like vesicles, but antibody-mediated neutralization can mitigate PCa progression; this is suggestive of an inverted (non-exosomal) Cav1 topology. Here we show that Cav1 can be secreted from specific PCa types in an inverted vesicle-associated form consistent with the features of bioactive Cav1 secretion. Characterization of the isolated vesicles by electron microscopy, single molecule fluorescent microscopy and proteomics reveals they represent a novel class of exosomes [~]40 nm in diameter containing [~]50-60 copies of Cav1 and strikingly, are released via a non-canonical secretory autophagy pathway. This study provides novel insights into a mechanism whereby Cav1 translocates from a normal plasma membrane distribution to an inverted secreted form implicated in PCa disease progression.

cell biology

Reconstruction of the urinary tract at the appropriate time reduces fibrosis of the metanephros in rats as judged by imaging

Chronic kidney disease leads to high morbidity rates among humans. It is a serious disease that requires curative treatments other than kidney transplantation. Recently, we successfully established the iPS-derived generated kidney, which might produce urine. The urine can be directed to the native bladder with a stepwise peristaltic ureter system, followed by anastomosis with the recipient ureter for reconstruction of the urinary tract. However, the growth of the regenerated kidney varies significantly, whereas the time window of the anastomosis is quite narrow. Therefore, this study was conducted to evaluate the growth of transplanted metanephros with bladder periodically and noninvasively using computed tomography and ultrasonography. Ultrasonographic findings showed high correlations with computed tomographic findings and clearly evaluated metanephros with bladder. We found that the degree of growth of the metanephros with bladder after the transplantation differed in each individual. However, most of them reached the appropriate period for urinary tract reconstruction within 3 weeks after transplantation. Optimizing the stepwise peristaltic ureter system anastomosis by ultrasonography reduced long-term tubular dilation of the metanephros, thereby decreasing fibrosis caused by transforming growth factor-{beta}. This may be significantly related to long-term maturation of fetal grafts. These results provide new insights into transplanting regenerated kidneys in higher animals. We are one step closer to the first human trial of kidney generation.

developmental biology