Cell type and tissue specific function of islet genes in zebrafish pancreas development

نویسندگان

  • Armin Wilfinger
  • Valeriya Arkhipova
  • Dirk Meyer
چکیده

Isl1 is a LIM homeobox transcription factor showing conserved expression in the developing and mature vertebrate pancreas. So far, functions of pancreatic Isl1 have mainly been studied in the mouse, where Isl1 has independent functions during formation of exocrine and endocrine tissues. Here, we take advantage of a recently described isl1 mutation in zebrafish to address pancreatic isl1 functions in a non-mammalian system. Isl1 in zebrafish, as in mouse, shows transient expression in mesenchyme flanking the pancreatic endoderm, and continuous expression in all endocrine cells. In isl1 mutants, endocrine cells are specified in normal numbers but more than half of these cells fail to establish expression of endocrine hormones. By using a lineage tracking approach that highlights cells leaving cell cycle early in development, we show that isl1 functions are different in first and second wave endocrine cells. In isl1 mutants, early forming first wave cells show virtually no glucagon expression and a reduced number of cells expressing insulin and somatostatin, while in the later born second wave cells somatostatin expressing cells are strongly reduced and insulin and glucagon positive cells form in normal numbers. Isl1 mutant zebrafish also display a smaller exocrine pancreas. We find that isl1 expression in the pancreatic mesenchyme overlaps with that of the related genes isl2a and isl2b and that pancreatic expression of isl-genes is independent of each other. As a combined block of two or three isl1/2 genes results in a dose-dependent reduction of exocrine tissue, our data suggest that all three genes cooperatively contribute to non-cell autonomous exocrine pancreas extension. The normal expression of the pancreas mesenchyme markers meis3, fgf10 and fgf24 in isl1/2 depleted embryos suggests that this activity is independent of isl-gene function in pancreatic mesenchyme formation as was found in mouse. This indicates species-specific differences in the requirement for isl-genes in pancreatic mesenchyme formation. Overall, our data reveal a novel interaction of isl1 and isl2 genes in exocrine pancreas expansion and cell type specific requirements during endocrine cell maturation.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

بررسی اثر مهاری سلول‌های بنیادی مزانشیمی بافت چربی بر روی تکثیر سلول‌های تک هسته‌ای طحالی موش دیابتی C57BL/6 در محیط آزمایشگاه

Background: Type 1 diabetes (T1D) is a T-cell mediated autoimmune disorder in which pancreas beta-cell destruction causes insulin deficiency and hyperglycemia. In addition to daily insulin treatment, allogeneic islet transplant inT1D is another therapeutic way that needs immunosuppressive drugs to control autoimmune damage and graft rejection. Since life-long application of these drugs is ...

متن کامل

بررسی تغییرات آسیب‌شناسی پانکراس در هیپوگلیسمی ناشی از افزایش انسولین در دوران نوزادی

Hyperinsulinism is responsible for about 55% of hypoglycemia in children less than 1 year old. In this study pancreas from 8 children with idiopathic hyperinsulinemic hypoglycemia of infancy(HHI) who underwent pancreatectomy in Ali-Asghar Hospital from 10 years ago were examined, using histochemical method and morphometric measurements. The children ranged from 3 to 13 months, and were ...

متن کامل

Notch-responsive cells initiate the secondary transition in larval zebrafish pancreas

Zebrafish provide a highly versatile model in which to study vertebrate development. Many recent studies have elucidated early events in the organogenesis of the zebrafish pancreas; however, several aspects of early endocrine pancreas formation in the zebrafish are not homologous to the mammalian system. To better identify mechanisms of islet formation in the zebrafish, with true homology to th...

متن کامل

Expression and function of ATP-dependent potassium channels in zebrafish islet β-cells

ATP-sensitive potassium channels (KATP channels) are critical nutrient sensors in many mammalian tissues. In the pancreas, KATP channels are essential for coupling glucose metabolism to insulin secretion. While orthologous genes for many components of metabolism-secretion coupling in mammals are present in lower vertebrates, their expression, functionality and ultimate impact on body glucose ho...

متن کامل

Expression and function of ATP-dependent potassium channels in zebrafish islet Î2-cells

Expression and function of ATP-dependent potassium channels in zebrafish islet β-cells." Royal function of ATP-dependent potassium channels in zebrafish islet β-cells. ATP-sensitive potassium channels (K ATP channels) are critical nutrient sensors in many mammalian tissues. In the pancreas, K ATP channels are essential for coupling glucose metabolism to insulin secretion. While orthologous gene...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره 378  شماره 

صفحات  -

تاریخ انتشار 2013