List of Faculty Publications
Below is a list of Faculty publications imported from PubMed or manually added. By default, publications are sorted by year with titles displayed in ascending alphabetical order.
Shortcuts: Wühr, Martin | Wingreen, Ned | Wieschaus, Eric | Troyanskaya, Olga | Tilghman, Shirley | Storey, John | Singh, Mona | Shvartsman, Stanislav | Shaevitz, Joshua | Rabinowitz, Joshua | Murphy, Coleen | Levine, Michael {Levine, Michael S.} | Gregor, Thomas | Botstein, David | Bialek, William | Ayroles, Julien | Andolfatto, Peter | Akey, Joshua
Filters: First Letter Of Title is P and Author is Tilghman, S M [Clear All Filters]
“Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting of the H19 and Igf2 genes in the mouse.”, Cold Spring Harb Symp Quant Biol, vol. 58, pp. 287-95, 1993.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting in the mouse.”, Harvey Lect, vol. 87, pp. 69-84, 1991.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “Piebald lethal (sl) acts early to disrupt the development of neural crest-derived melanocytes.”, Proc Natl Acad Sci U S A, vol. 91, no. 15, pp. 7159-63, 1994.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Parental imprinting of the mouse H19 gene.”, Nature, vol. 351, no. 6322, pp. 153-5, 1991.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Physical linkage of two mammalian imprinted genes, H19 and insulin-like growth factor 2.”, Nat Genet, vol. 2, no. 1, pp. 61-5, 1992.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “The product of the H19 gene may function as an RNA.”, Mol Cell Biol, vol. 10, no. 1, pp. 28-36, 1990.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
, “Postnatal repression of the alpha-fetoprotein gene is enhancer independent.”, Genes Dev, vol. 3, no. 4, pp. 537-46, 1989.
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