The nuclear lamina in Heidelberg and Würzburg: a personal view.
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[1] C. Grund,et al. Intranuclear membrane structure formations by CaaX-containing nuclear proteins , 2004, Journal of Cell Science.
[2] G. Krohne,et al. The lamin CxxM motif promotes nuclear membrane growth , 2004, Journal of Cell Science.
[3] D. Weber,et al. The lamin B receptor of Drosophila melanogaster , 2004, Journal of Cell Science.
[4] H. Reichmann,et al. Expression and localization of nuclear proteins in autosomal-dominant Emery-Dreifuss muscular dystrophy with LMNA R377H mutation , 2004, BMC Cell Biology.
[5] B. Liebe,et al. Disruption of spermatogenesis in mice lacking A-type lamins , 2004, Journal of Cell Science.
[6] M. Bergo,et al. A carboxyl-terminal interaction of lamin B1 is dependent on the CAAX endoprotease Rce1 and carboxymethylation , 2003, The Journal of cell biology.
[7] G. Krohne,et al. Lamina-associated polypeptide 2β (LAP2β) is contained in a protein complex together with A- and B-type lamins , 2003 .
[8] Howard J Worman,et al. The nuclear lamina and inherited disease. , 2002, Trends in cell biology.
[9] R. Goldman,et al. Nuclear lamins: building blocks of nuclear architecture. , 2002, Genes & development.
[10] R. Benavente,et al. Meiotic lamin C2: the unique amino-terminal hexapeptide GNAEGR is essential for nuclear envelope association. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[11] R. Foisner,et al. Review: lamina-associated polypeptide 2 isoforms and related proteins in cell cycle-dependent nuclear structure dynamics. , 2000, Journal of structural biology.
[12] Brian Burke,et al. Loss of a-Type Lamin Expression Compromises Nuclear Envelope Integrity Leading to Muscular Dystrophy , 1999, The Journal of cell biology.
[13] G. Krohne,et al. Subcellular distribution of the Xenopus p58/lamin B receptor in oocytes and eggs. , 1999, Journal of cell science.
[14] R. Hock,et al. Architecture of the nuclear periphery of rat pachytene spermatocytes: distribution of nuclear envelope proteins in relation to synaptonemal complex attachment sites. , 1999, Molecular biology of the cell.
[15] T. Richmond,et al. The tail domain of lamin Dm0 binds histones H2A and H2B. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[16] N. Stuurman,et al. Assembly of Drosophila lamin Dm0 and C mutant proteins studied with the baculovirus system. , 1998, European journal of cell biology.
[17] R. Benavente,et al. Nuclear envelope remodelling during rat spermiogenesis: distribution and expression pattern of LAP2/thymopoietins. , 1998, Journal of cell science.
[18] N. Stuurman,et al. Assembly of A- and B-type lamins studied in vivo with the baculovirus system. , 1997, Journal of cell science.
[19] E. Lane,et al. Distinct nuclear assembly pathways for lamins A and C lead to their increase during quiescence in Swiss 3T3 cells. , 1997, Journal of cell science.
[20] E. Buchner,et al. Insertional Mutation of the Drosophila Nuclear Lamin Dm0 Gene Results in Defective Nuclear Envelopes, Clustering of Nuclear Pore Complexes, and Accumulation of Annulate Lamellae , 1997, The Journal of cell biology.
[21] R. Benavente,et al. Change of karyoskeleton during mammalian spermatogenesis: expression pattern of nuclear lamin C2 and its regulation. , 1996, Experimental cell research.
[22] N. Stuurman,et al. Intermediate filament protein polymerization: molecular analysis of Drosophila nuclear lamin head-to-tail binding. , 1996, Journal of structural biology.
[23] G. Krohne,et al. Characterization and quantitation of three B-type lamins in Xenopus oocytes and eggs: increase of lamin LI protein synthesis during meiotic maturation. , 1996, Journal of cell science.
[24] L. Gerace,et al. A chromatin binding site in the tail domain of nuclear lamins that interacts with core histones , 1995, The Journal of cell biology.
[25] K Weber,et al. Expression of Drosophila lamin C is developmentally regulated: analogies with vertebrate A-type lamins. , 1995, Journal of cell science.
[26] G. Krohne,et al. The nuclear membrane-associated honeycomb structure of the unicellular organism Amoeba proteus: on the search for homologies with the nuclear lamina of metazoa. , 1995, European journal of cell biology.
[27] N. Nakajima,et al. Genomic structure of the mouse A‐type lamin gene locus encoding somatic and germ cell‐specific lamins , 1995, FEBS letters.
[28] R. Stick,et al. Analysis of nuclear lamin isoprenylation in Xenopus oocytes: isoprenylation of lamin B3 precedes its uptake into the nucleus , 1995, The Journal of cell biology.
[29] G. Krohne,et al. Lamin-dependent nuclear envelope reassembly following mitosis: an argument. , 1994, Trends in cell biology.
[30] K. Furukawa,et al. Identification and cloning of an mRNA coding for a germ cell-specific A-type lamin in mice. , 1994, Experimental cell research.
[31] G. Krohne,et al. Membrane-associated lamins in Xenopus egg extracts: identification of two vesicle populations , 1993, The Journal of cell biology.
[32] H. Worman,et al. Structural organization of the human gene encoding nuclear lamin A and nuclear lamin C. , 1993, The Journal of biological chemistry.
[33] G. Krohne,et al. Presence of a nuclear lamina in pachytene spermatocytes of the rat. , 1993, Journal of cell science.
[34] Y. Hotta,et al. cDNA cloning of a germ cell specific lamin B3 from mouse spermatocytes and analysis of its function by ectopic expression in somatic cells. , 1993, The EMBO journal.
[35] R. Benavente,et al. Identification of a short nuclear lamin protein selectively expressed during meiotic stages of rat spermatogenesis. , 1992, Differentiation; research in biological diversity.
[36] N. Feinstein,et al. Lamin activity is essential for nuclear envelope assembly in a Drosophila embryo cell-free extract , 1992, The Journal of cell biology.
[37] B. Burke,et al. Independent expression and assembly properties of heterologous lamins A and C in murine embryonal carcinomas. , 1992, European journal of cell biology.
[38] P. Lichter,et al. Gene structure and chromosomal localization of the murine lamin B2 gene. , 1991, European journal of cell biology.
[39] G. Krohne,et al. Interaction of Xenopus lamins A and LII with chromatin in vitro mediated by a sequence element in the carboxyterminal domain. , 1991, Experimental cell research.
[40] G. Krohne,et al. In vitro reconstitution of recombinant lamin A and a lamin A mutant lacking the carboxy-terminal tail. , 1991, European journal of cell biology.
[41] A. Donaldson,et al. Expression in Escherichia coli of human lamins A and C: influence of head and tail domains on assembly properties and paracrystal formation. , 1991, Journal of cell science.
[42] R. Benavente. Postmitotic nuclear reorganization events analyzed in living cells , 1991, Chromosoma.
[43] M. Peter,et al. Expression of chicken lamin B2 in Escherichia coli: characterization of its structure, assembly, and molecular interactions , 1991, The Journal of cell biology.
[44] E. Nigg,et al. The CaaX motif is required for isoprenylation, carboxyl methylation, and nuclear membrane association of lamin B2 , 1991, The Journal of cell biology.
[45] M. Dabauvalle,et al. Spontaneous assembly of pore complex-containing membranes ("annulate lamellae") in Xenopus egg extract in the absence of chromatin , 1991, The Journal of cell biology.
[46] C. Grund,et al. Immunolocalization of lamins in the thick nuclear lamina of human synovial cells. , 1991, European journal of cell biology.
[47] V. Döring,et al. Gene structure of nuclear lamin LIII of Xenopus laevis; a model for the evolution of IF proteins from a lamin‐like ancestor. , 1990, The EMBO journal.
[48] K. Wilson,et al. A lamin-independent pathway for nuclear envelope assembly , 1990, The Journal of cell biology.
[49] K. Zatloukal,et al. Characterization of a second highly conserved B-type lamin present in cells previously thought to contain only a single B-type lamin , 1990, Chromosoma.
[50] J. Hartwig,et al. The CaaX motif of lamin A functions in conjunction with the nuclear localization signal to target assembly to the nuclear envelope , 1989, Cell.
[51] I. Waizenegger,et al. The conserved carboxy-terminal cysteine of nuclear lamins is essential for lamin association with the nuclear envelope , 1989, The Journal of cell biology.
[52] E. Nigg,et al. A somatic cell-derived system for studying both early and late mitotic events in vitro. , 1989, Journal of cell science.
[53] K. Weber,et al. Differential timing of nuclear lamin A/C expression in the various organs of the mouse embryo and the young animal: a developmental study. , 1989, Development.
[54] W. Franke,et al. Amino acid sequence and molecular characterization of murine lamin B as deduced from cDNA clones. , 1988, European journal of cell biology.
[55] R. Stick. cDNA cloning of the developmentally regulated lamin LIII of Xenopus laevis. , 1988, The EMBO journal.
[56] M. Kirschner,et al. Nuclear lamin LI of Xenopus laevis: cDNA cloning, amino acid sequence and binding specificity of a member of the lamin B subfamily. , 1987, The EMBO journal.
[57] M. Kirschner,et al. A new lamin in Xenopus somatic tissues displays strong homology to human lamin A. , 1987, The EMBO journal.
[58] C. Stewart,et al. Teratocarcinoma stem cells and early mouse embryos contain only a single major lamin polypeptide closely resembling lamin B , 1987, Cell.
[59] C. Lehner,et al. Differential expression of nuclear lamin proteins during chicken development , 1987, The Journal of cell biology.
[60] W. Franke. Nuclear lamins and cytoplasmic intermediate filament proteins: A growing multigene family , 1987, Cell.
[61] G. Krohne,et al. Involvement of nuclear lamins in postmitotic reorganization of chromatin as demonstrated by microinjection of lamin antibodies , 1986, The Journal of cell biology.
[62] U. Aebi,et al. The nuclear lamina is a meshwork of intermediate-type filaments , 1986, Nature.
[63] G. Blobel,et al. cDNA sequencing of nuclear lamins A and C reveals primary and secondary structural homology to intermediate filament proteins. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[64] L. Gerace,et al. A cell free system to study reassembly of the nuclear envelope at the end of mitosis , 1986, Cell.
[65] M. Kirschner,et al. Homologies in both primary and secondary structure between nuclear envelope and intermediate filament proteins , 1986, Nature.
[66] R. Benavente,et al. Change of karyoskeleton during spermatogenesis of Xenopus: expression of lamin LIV, a nuclear lamina protein specific for the male germ line. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[67] W. Franke,et al. Cell type-specific expression of nuclear lamina proteins during development of Xenopus laevis , 1985, Cell.
[68] P. Hausen,et al. Changes in the nuclear lamina composition during early development of Xenopus laevis , 1985, Cell.
[69] M. Dabauvalle,et al. Cell type-specific differences in protein composition of nuclear pore complex-lamina structures in oocytes and erythrocytes of Xenopus laevis. , 1981, Journal of molecular biology.
[70] G. Blobel,et al. The nuclear envelope lamina is reversibly depolymerized during mitosis , 1980, Cell.
[71] G. Blobel,et al. Immunocytochemical localization of the major polypeptides of the nuclear pore complex-lamina fraction. Interphase and mitotic distribution , 1978, The Journal of cell biology.
[72] S. Ely,et al. Interaction of antibodies against nuclear envelope-associated proteins from rat liver nuclei with rodent and human cells. , 1978, Experimental cell research.
[73] W. Franke,et al. The major polypeptides of the nuclear pore complex. , 1978, Experimental cell research.
[74] S. Ely,et al. Localization of a nuclear envelope-associated protein by indirect immunofluorescence microscopy using antibodies against a major polypeptide from rat liver fractions enriched in nuclear envelope-associated material. , 1978, Cytobiologie.
[75] G. Blobel,et al. A modified procedure for the isolation of a pore complex-lamina fraction from rat liver nuclei , 1976, The Journal of cell biology.
[76] J. Kartenbeck,et al. Experimental disintegration of the nuclear envelope. Evidence for pore- connecting fibrils , 1976, The Journal of cell biology.
[77] R. P. Aaronson,et al. Isolation of nuclear pore complexes in association with a lamina. , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[78] U. Scheer. THE ULTRASTRUCTURE OF THE NUCLEAR ENVELOPE OF AMPHIBIAN OOCYTES: A REINVESTIGATION , 1970, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[79] W. Franke,et al. The ultrastructure of the nuclear envelope of amphibian oocytes: a reinvestigation. I. The mature oocyte. , 1970, Journal of ultrastructure research.
[80] W. Franke,et al. The ultrastructure of the nuclear envelope of amphibian oocytes: a reinvestigation. II. The immature oocyte and dynamic aspects. , 1970, Journal of ultrastructure research.
[81] W. Franke. ISOLATED NUCLEAR MEMBRANES , 1966, The Journal of cell biology.
[82] H. Busch. The Cell Nucleus , 1966, Nature.
[83] D. Fawcett,et al. On the occurrence of a fibrous lamina on the inner aspect of the nuclear envelope in certain cells of vertebrates. , 1966, The American journal of anatomy.
[84] R. Benavente,et al. The Nuclear Envelope at the Attachment Sites of Mammalian Meiotic Telomeres , 2004 .
[85] Yosef Gruenbaum,et al. The nuclear lamina and its functions in the nucleus. , 2003, International review of cytology.
[86] U Aebi,et al. Nuclear lamins: their structure, assembly, and interactions. , 1998, Journal of structural biology.
[87] G. Krohne. Lamin assembly in vivo. , 1998, Sub-cellular biochemistry.
[88] E. Nigg,et al. The Nuclear Lamina: Regulation of Assembly by Posttranslational Modifications , 1995 .
[89] M. Peter,et al. The role of the head and tail domain in lamin structure and assembly: analysis of bacterially expressed chicken lamin A and truncated B2 lamins. , 1992, Journal of structural biology.
[90] G. Krohne,et al. The nuclear lamins. A multigene family of proteins in evolution and differentiation. , 1986, Experimental cell research.
[91] K. Weber,et al. A monoclonal antibody against nuclear lamina proteins reveals cell type-specificity in Xenopus laevis. , 1984, Experimental cell research.
[92] W. Franke,et al. Proteins of pore complex--lamina structures from nuclei and nuclear membranes. , 1983, Methods in enzymology.
[93] W. Franke. Structure, biochemistry, and functions of the nuclear envelope. , 1974, International review of cytology.
[94] W. Franke,et al. 5 – Structures and Functions of the Nuclear Envelope , 1974 .