Expression of murine STF-1, a putative insulin gene transcription factor, in β cells of pancreas, duodenal epithelium and pancreatic exocrine and endocrine progenitors during … Y Guz, MR Montminy, R Stein, J Leonard, LW Gamer, CVE Wright, ... Development 121 (1), 11-18, 1995 | 709 | 1995 |
Hybrid insulin genes reveal a developmental lineage for pancreatic endocrine cells and imply a relationship with neurons S Alpert, D Hanahan, G Teitelman Cell 53 (2), 295-308, 1988 | 537 | 1988 |
Precursor cells of mouse endocrine pancreas coexpress insulin, glucagon and the neuronal proteins tyrosine hydroxylase and neuropeptide Y, but not pancreatic polypeptide G Teitelman, S Alpert, JM Polak, A Martinez, D Hanahan Development 118 (4), 1031-1039, 1993 | 459 | 1993 |
Regeneration of pancreatic β cells from intra-islet precursor cells in an experimental model of diabetes Y Guz, I Nasir, G Teitelman Endocrinology 142 (11), 4956-4968, 2001 | 408 | 2001 |
Differentiation of new insulin-producing cells is induced by injury in adult pancreatic islets A Fernandes, LC King, Y Guz, R Stein, CVE Wright, G Teitelman Endocrinology 138 (4), 1750-1762, 1997 | 318 | 1997 |
Insulin expression in pancreatic islet cells relies on cooperative interactions between the helix loop helix factor E47 and the homeobox factor STF-1. B Peers, J Leonard, S Sharma, G Teitelman, MR Montminy Molecular Endocrinology 8 (12), 1798-1806, 1994 | 270 | 1994 |
Appearance of catecholamine-synthesizing enzymes during development of rat sympathetic nervous system: possible role of tissue environment G Teitelman, H Baker, TH Joh, DJ Reis Proceedings of the National Academy of Sciences 76 (1), 509-513, 1979 | 223 | 1979 |
Some neurons of the rat central nervous system contain aromatic-L-amino-acid decarboxylase but not monoamines CB Jaeger, G Teitelman, TH Joh, VR Albert, DH Park, DJ Reis Science 219 (4589), 1233-1235, 1983 | 205 | 1983 |
Reducing plasma membrane sphingomyelin increases insulin sensitivity Z Li, H Zhang, J Liu, CP Liang, Y Li, Y Li, G Teitelman, T Beyer, HH Bui, ... Molecular and cellular biology 31 (20), 4205-4218, 2011 | 201 | 2011 |
Glucagon gene regulatory region directs oncoprotein expression to neurons and pancreatic a cells S Efrat, G Teitelman, M Anwar, D Ruggiero, D Hanahan Neuron 1 (7), 605-613, 1988 | 199 | 1988 |
Cell lineage analysis of pancreatic islet cell development: glucagon and insulin cells arise from catecholaminergic precursors present in the pancreatic duct G Teitelman, JK Lee Developmental biology 121 (2), 454-466, 1987 | 174 | 1987 |
XIHbox 8, an endoderm-specific Xenopus homeodomain protein, is closely related to a mammalian insulin gene transcription factor. M Peshavaria, L Gamer, E Henderson, G Teitelman, CV Wright, R Stein Molecular Endocrinology 8 (6), 806-816, 1994 | 167 | 1994 |
Catecholamine biosynthetic enzymes are expressed in replicating cells of the peripheral but not the central nervous system. TP Rothman, LA Specht, MD Gershon, TH Joh, G Teitelman, VM Pickel, ... Proceedings of the National Academy of Sciences 77 (10), 6221-6225, 1980 | 163 | 1980 |
Transformation of catecholaminergic precursors into glucagon (A) cells in mouse embryonic pancreas. G Teitelman, TH Joh, DJ Reis Proceedings of the National Academy of Sciences 78 (8), 5225-5229, 1981 | 155 | 1981 |
Ablation of the glucagon receptor gene increases fetal lethality and produces alterations in islet development and maturation PM Vuguin, MH Kedees, L Cui, Y Guz, RW Gelling, M Nejathaim, ... Endocrinology 147 (9), 3995-4006, 2006 | 128 | 2006 |
Proliferation, senescence, and neoplastic progression of β cells in hyperplasic pancreatic islets G Teitelman, S Alpert, D Hanahan Cell 52 (1), 97-105, 1988 | 124 | 1988 |
Proliferation and distribution of cells that transiently express a catecholaminergic phenotype during development in mice and rats G Teitelman, MD Gershon, TP Rothman, TH Joh, DJ Reis Developmental biology 86 (2), 348-355, 1981 | 123 | 1981 |
Transient expression of a noradrenergic phenotype in cells of the rat embryonic gut G Teitelman, TH Joh, DJ Reis Brain research 158 (1), 229-234, 1978 | 106 | 1978 |
Islet injury induces neurotrophin expression in pancreatic cells and reactive gliosis of peri‐islet Schwann cells G Teitelman, Y Guz, S Ivkovic, M Ehrlich Journal of neurobiology 34 (4), 304-318, 1998 | 78 | 1998 |
Abrogation of protein convertase 2 activity results in delayed islet cell differentiation and maturation, increased α-cell proliferation, and islet neogenesis M Vincent, Y Guz, M Rozenberg, G Webb, M Furuta, D Steiner, ... Endocrinology 144 (9), 4061-4069, 2003 | 74 | 2003 |