Molecular Biology of the Islets of Langerhans
Herausgeber: Hiroshi, Okamoto; Okamoto, Hiroshi
Molecular Biology of the Islets of Langerhans
Herausgeber: Hiroshi, Okamoto; Okamoto, Hiroshi
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The islets of Langerhans, the primary source of hormone production in the pancreas, have been the focus of research into the nature of diabetes for decades.
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The islets of Langerhans, the primary source of hormone production in the pancreas, have been the focus of research into the nature of diabetes for decades.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 364
- Erscheinungstermin: 30. Juni 2008
- Englisch
- Abmessung: 229mm x 152mm x 21mm
- Gewicht: 591g
- ISBN-13: 9780521088008
- ISBN-10: 0521088003
- Artikelnr.: 24879333
- Verlag: Cambridge University Press
- Seitenzahl: 364
- Erscheinungstermin: 30. Juni 2008
- Englisch
- Abmessung: 229mm x 152mm x 21mm
- Gewicht: 591g
- ISBN-13: 9780521088008
- ISBN-10: 0521088003
- Artikelnr.: 24879333
Preface Hiroshi Okamoto; Introductory overview Hiroshi Okamoto; Part I. The
Molecular Biology of Peptide Hormones in the Islets of Langerhans: 1. The
organization and structure of insulin genes Graeme I. Bell and Susumu
Seino; 2. The regulation of insulin gene expression Michael D. Walker; 3.
The translational control of proinsulin synthesis by glucose Nobuyuki Itoh;
4. The structure and regulation of the glucagon gene Joel F. Habener; 5.
The structure and regulation of the somatostatin gene Joel F. Habener; 6.
The mosaic evolution of the pancreatic polypeptide gene Hiroshi Yamamoto,
Hideto Yonekura and Koji Nata; 7. The structure and expression of genes of
vasoactive intestinal peptide and related peptides Takashi Yamagami; 8.
Pancreastatin: a novel pancreatic hormone Kazuhiko Tatemoto; 9. The
processing of peptide precursors Thue W. Schwartz; Part II. Molecular
Aspects of Diabetes Mellitus: 10. The molecular basis of experimental
diabetes Hiroshi Okamoto; 11. Class II histocompatibility genes and
diabetes David Owerbach; 12. The role of the insulin gene in diabetes: use
of restriction fragment length polymorphisms in diagnosis Steven C. Elben
and M. Alan Permutt; 13. Abnormal products of the human insulin gene Howard
S. Tager; 14. A novel gene, rig, activated in insulinomas Shin Takasawa,
Chiyoko Inoue, Kiyoto Shiga and Motoo Kitagawa; 16. Defects of signal
transduction in a tumoral islet cell line Willy J. Malaisse; Index.
Molecular Biology of Peptide Hormones in the Islets of Langerhans: 1. The
organization and structure of insulin genes Graeme I. Bell and Susumu
Seino; 2. The regulation of insulin gene expression Michael D. Walker; 3.
The translational control of proinsulin synthesis by glucose Nobuyuki Itoh;
4. The structure and regulation of the glucagon gene Joel F. Habener; 5.
The structure and regulation of the somatostatin gene Joel F. Habener; 6.
The mosaic evolution of the pancreatic polypeptide gene Hiroshi Yamamoto,
Hideto Yonekura and Koji Nata; 7. The structure and expression of genes of
vasoactive intestinal peptide and related peptides Takashi Yamagami; 8.
Pancreastatin: a novel pancreatic hormone Kazuhiko Tatemoto; 9. The
processing of peptide precursors Thue W. Schwartz; Part II. Molecular
Aspects of Diabetes Mellitus: 10. The molecular basis of experimental
diabetes Hiroshi Okamoto; 11. Class II histocompatibility genes and
diabetes David Owerbach; 12. The role of the insulin gene in diabetes: use
of restriction fragment length polymorphisms in diagnosis Steven C. Elben
and M. Alan Permutt; 13. Abnormal products of the human insulin gene Howard
S. Tager; 14. A novel gene, rig, activated in insulinomas Shin Takasawa,
Chiyoko Inoue, Kiyoto Shiga and Motoo Kitagawa; 16. Defects of signal
transduction in a tumoral islet cell line Willy J. Malaisse; Index.
Preface Hiroshi Okamoto; Introductory overview Hiroshi Okamoto; Part I. The
Molecular Biology of Peptide Hormones in the Islets of Langerhans: 1. The
organization and structure of insulin genes Graeme I. Bell and Susumu
Seino; 2. The regulation of insulin gene expression Michael D. Walker; 3.
The translational control of proinsulin synthesis by glucose Nobuyuki Itoh;
4. The structure and regulation of the glucagon gene Joel F. Habener; 5.
The structure and regulation of the somatostatin gene Joel F. Habener; 6.
The mosaic evolution of the pancreatic polypeptide gene Hiroshi Yamamoto,
Hideto Yonekura and Koji Nata; 7. The structure and expression of genes of
vasoactive intestinal peptide and related peptides Takashi Yamagami; 8.
Pancreastatin: a novel pancreatic hormone Kazuhiko Tatemoto; 9. The
processing of peptide precursors Thue W. Schwartz; Part II. Molecular
Aspects of Diabetes Mellitus: 10. The molecular basis of experimental
diabetes Hiroshi Okamoto; 11. Class II histocompatibility genes and
diabetes David Owerbach; 12. The role of the insulin gene in diabetes: use
of restriction fragment length polymorphisms in diagnosis Steven C. Elben
and M. Alan Permutt; 13. Abnormal products of the human insulin gene Howard
S. Tager; 14. A novel gene, rig, activated in insulinomas Shin Takasawa,
Chiyoko Inoue, Kiyoto Shiga and Motoo Kitagawa; 16. Defects of signal
transduction in a tumoral islet cell line Willy J. Malaisse; Index.
Molecular Biology of Peptide Hormones in the Islets of Langerhans: 1. The
organization and structure of insulin genes Graeme I. Bell and Susumu
Seino; 2. The regulation of insulin gene expression Michael D. Walker; 3.
The translational control of proinsulin synthesis by glucose Nobuyuki Itoh;
4. The structure and regulation of the glucagon gene Joel F. Habener; 5.
The structure and regulation of the somatostatin gene Joel F. Habener; 6.
The mosaic evolution of the pancreatic polypeptide gene Hiroshi Yamamoto,
Hideto Yonekura and Koji Nata; 7. The structure and expression of genes of
vasoactive intestinal peptide and related peptides Takashi Yamagami; 8.
Pancreastatin: a novel pancreatic hormone Kazuhiko Tatemoto; 9. The
processing of peptide precursors Thue W. Schwartz; Part II. Molecular
Aspects of Diabetes Mellitus: 10. The molecular basis of experimental
diabetes Hiroshi Okamoto; 11. Class II histocompatibility genes and
diabetes David Owerbach; 12. The role of the insulin gene in diabetes: use
of restriction fragment length polymorphisms in diagnosis Steven C. Elben
and M. Alan Permutt; 13. Abnormal products of the human insulin gene Howard
S. Tager; 14. A novel gene, rig, activated in insulinomas Shin Takasawa,
Chiyoko Inoue, Kiyoto Shiga and Motoo Kitagawa; 16. Defects of signal
transduction in a tumoral islet cell line Willy J. Malaisse; Index.