Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells

Porcine pancreatic endocrine cells are an attractive candidate for islet cell transplantation in view of the immunological properties and structural similarities of porcine insulin to human insulin. We recently established a method of isolation and a primary monolayer culture of porcine pancreatic e...

Full description

Bibliographic Details
Main Authors: Mariko Tsuchiya, Ken Tsuchiya, Hisako Ohgawara
Format: Article
Language:English
Published: SAGE Publishing 2001-05-01
Series:Cell Transplantation
Online Access:https://doi.org/10.3727/000000001783986611
id doaj-3951ff18df0f4582badb2d4c74c26f2f
record_format Article
spelling doaj-3951ff18df0f4582badb2d4c74c26f2f2020-11-25T03:24:08ZengSAGE PublishingCell Transplantation0963-68971555-38922001-05-011010.3727/000000001783986611Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine CellsMariko Tsuchiya0Ken Tsuchiya1Hisako Ohgawara2Institute of Geriatrics, Aoyama Hospital, Tokyo Women's Medical University, Tokyo, JapanDepartment of Medicine IV, Tokyo Women's Medical University, Tokyo, JapanMedical Research Institute, Tokyo Women's Medical University, Tokyo, JapanPorcine pancreatic endocrine cells are an attractive candidate for islet cell transplantation in view of the immunological properties and structural similarities of porcine insulin to human insulin. We recently established a method of isolation and a primary monolayer culture of porcine pancreatic endocrine cells. In this study, cloning of the porcine insulin cDNA was performed to clarify the genetic background of the purified isolated cells. A homology-based PCR cloning method was employed to determine the sequence using mRNA extracted from the monolayer-forming cells, and the candidate products were then determined by a homology search on the human insulin cDNA. According to the newly identified sequence, rapid amplification of cDNA ends was applied to the 5′ and 3′ ends, and the entire cDNA sequence was determined. Gene and protein expression was confirmed by Northern blotting, immunohistochemistry, and enzyme assay. To examine the transcriptional level, the cultured cells were incubated in a 20 mM D-glucose medium in the presence or absence of 5 μM forskolin. The porcine insulin cDNA exhibited a high homology to the human cDNA and showed 85% matching with the human amino acid sequence. D-Glucose at 20 mM stimulated the insulin secretion and mRNA expression, and further addition of 5 μM forskolin with the glucose was applied as the strongest stimulus in this culture system.https://doi.org/10.3727/000000001783986611
collection DOAJ
language English
format Article
sources DOAJ
author Mariko Tsuchiya
Ken Tsuchiya
Hisako Ohgawara
spellingShingle Mariko Tsuchiya
Ken Tsuchiya
Hisako Ohgawara
Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells
Cell Transplantation
author_facet Mariko Tsuchiya
Ken Tsuchiya
Hisako Ohgawara
author_sort Mariko Tsuchiya
title Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells
title_short Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells
title_full Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells
title_fullStr Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells
title_full_unstemmed Molecular Cloning of the Porcine Insulin cDNA Using a Monolayer Culture of Pancreatic Endocrine Cells
title_sort molecular cloning of the porcine insulin cdna using a monolayer culture of pancreatic endocrine cells
publisher SAGE Publishing
series Cell Transplantation
issn 0963-6897
1555-3892
publishDate 2001-05-01
description Porcine pancreatic endocrine cells are an attractive candidate for islet cell transplantation in view of the immunological properties and structural similarities of porcine insulin to human insulin. We recently established a method of isolation and a primary monolayer culture of porcine pancreatic endocrine cells. In this study, cloning of the porcine insulin cDNA was performed to clarify the genetic background of the purified isolated cells. A homology-based PCR cloning method was employed to determine the sequence using mRNA extracted from the monolayer-forming cells, and the candidate products were then determined by a homology search on the human insulin cDNA. According to the newly identified sequence, rapid amplification of cDNA ends was applied to the 5′ and 3′ ends, and the entire cDNA sequence was determined. Gene and protein expression was confirmed by Northern blotting, immunohistochemistry, and enzyme assay. To examine the transcriptional level, the cultured cells were incubated in a 20 mM D-glucose medium in the presence or absence of 5 μM forskolin. The porcine insulin cDNA exhibited a high homology to the human cDNA and showed 85% matching with the human amino acid sequence. D-Glucose at 20 mM stimulated the insulin secretion and mRNA expression, and further addition of 5 μM forskolin with the glucose was applied as the strongest stimulus in this culture system.
url https://doi.org/10.3727/000000001783986611
work_keys_str_mv AT marikotsuchiya molecularcloningoftheporcineinsulincdnausingamonolayercultureofpancreaticendocrinecells
AT kentsuchiya molecularcloningoftheporcineinsulincdnausingamonolayercultureofpancreaticendocrinecells
AT hisakoohgawara molecularcloningoftheporcineinsulincdnausingamonolayercultureofpancreaticendocrinecells
_version_ 1724603117856620544