Smith J, Ockleford CD (1994). "Laser scanning confocal examination and comparison of nidogen (entactin) with laminin in term human amniochorion". Placenta15 (1): 95–106. PMID8208674. doi:10.1016/S0143-4004(05)80240-1.
Ichikawa N, Kasai S, Suzuki N, Nishi N, Oishi S, Fujii N, Kadoya Y, Hatori K, Mizuno Y, Nomizu M, Arikawa-Hirasawa E (April 2005). "Identification of neurite outgrowth active sites on the laminin alpha4 chain G domain". Biochemistry44 (15): 5755–62. PMID15823034. doi:10.1021/bi0476228.
Beckmann G, Hanke J, Bork P, Reich JG (February 1998). "Merging extracellular domains: fold prediction for laminin G-like and amino-terminal thrombospondin-like modules based on homology to pentraxins". J. Mol. Biol.275 (5): 725–30. PMID9480764. doi:10.1006/jmbi.1997.1510.
Domogatskaya; et al. (2008). "Laminin-511 but not -332, -111, or -411 enables mouse embryonic stem cell self-renewal in vitro". Stem Cells26 (11): 2800–9. PMID18757303. doi:10.1634/stemcells.2007-0389.
Miyakzaki; et al. (2008). "Recombinant human laminin isoforms can support the undifferentiated growth of human embryonic stem cells". Biochem. Biophys. Res. Commun.375 (1): 27–32. PMID18675790. doi:10.1016/j.bbrc.2008.07.111.
Engel J (1989). "EGF-like domains in extracellular matrix proteins: localized signals for growth and differentiation?". FEBS Lett.251 (1-2): 1–7. PMID2666164. doi:10.1016/0014-5793(89)81417-6.
Stetefeld J, Mayer U, Timpl R, Huber R (1996). "Crystal structure of three consecutive laminin-type epidermal growth factor-like (LE) modules of laminin gamma1 chain harboring the nidogen binding site". J. Mol. Biol.257 (3): 644–57. PMID8648630. doi:10.1006/jmbi.1996.0191.
Baumgartner R, Czisch M, Mayer U, Poschl E, Huber R, Timpl R, Holak TA (1996). "Structure of the nidogen binding LE module of the laminin gamma1 chain in solution". J. Mol. Biol.257 (3): 658–68. PMID8648631. doi:10.1006/jmbi.1996.0192.
Mayer U, Poschl E, Gerecke DR, Wagman DW, Burgeson RE, Timpl R (1995). "Low nidogen affinity of laminin-5 can be attributed to two serine residues in EGF-like motif gamma 2III4". FEBS Lett.365 (2-3): 129–32. PMID7781764. doi:10.1016/0014-5793(95)00438-F.
Smith J, Ockleford CD (1994). "Laser scanning confocal examination and comparison of nidogen (entactin) with laminin in term human amniochorion". Placenta15 (1): 95–106. PMID8208674. doi:10.1016/S0143-4004(05)80240-1.
Ichikawa N, Kasai S, Suzuki N, Nishi N, Oishi S, Fujii N, Kadoya Y, Hatori K, Mizuno Y, Nomizu M, Arikawa-Hirasawa E (April 2005). "Identification of neurite outgrowth active sites on the laminin alpha4 chain G domain". Biochemistry44 (15): 5755–62. PMID15823034. doi:10.1021/bi0476228.
Beckmann G, Hanke J, Bork P, Reich JG (February 1998). "Merging extracellular domains: fold prediction for laminin G-like and amino-terminal thrombospondin-like modules based on homology to pentraxins". J. Mol. Biol.275 (5): 725–30. PMID9480764. doi:10.1006/jmbi.1997.1510.
Wewer; et al. (1983). "Human laminin isolated in a nearly intact, biologically active form from placenta by limited proteolysis". J Biol Chem.258 (20): 12654–60. PMID6415055.
Domogatskaya; et al. (2008). "Laminin-511 but not -332, -111, or -411 enables mouse embryonic stem cell self-renewal in vitro". Stem Cells26 (11): 2800–9. PMID18757303. doi:10.1634/stemcells.2007-0389.
Miyakzaki; et al. (2008). "Recombinant human laminin isoforms can support the undifferentiated growth of human embryonic stem cells". Biochem. Biophys. Res. Commun.375 (1): 27–32. PMID18675790. doi:10.1016/j.bbrc.2008.07.111.
Sasaki M, Kleinman HK, Huber H, Deutzmann R, Yamada Y (1988). "Laminin, a multidomain protein. The A chain has a unique globular domain and homology with the basement membrane proteoglycan and the laminin B chains". J. Biol. Chem.263 (32): 16536–44. PMID3182802.
Engel J (1989). "EGF-like domains in extracellular matrix proteins: localized signals for growth and differentiation?". FEBS Lett.251 (1-2): 1–7. PMID2666164. doi:10.1016/0014-5793(89)81417-6.
Stetefeld J, Mayer U, Timpl R, Huber R (1996). "Crystal structure of three consecutive laminin-type epidermal growth factor-like (LE) modules of laminin gamma1 chain harboring the nidogen binding site". J. Mol. Biol.257 (3): 644–57. PMID8648630. doi:10.1006/jmbi.1996.0191.
Baumgartner R, Czisch M, Mayer U, Poschl E, Huber R, Timpl R, Holak TA (1996). "Structure of the nidogen binding LE module of the laminin gamma1 chain in solution". J. Mol. Biol.257 (3): 658–68. PMID8648631. doi:10.1006/jmbi.1996.0192.
Mayer U, Poschl E, Gerecke DR, Wagman DW, Burgeson RE, Timpl R (1995). "Low nidogen affinity of laminin-5 can be attributed to two serine residues in EGF-like motif gamma 2III4". FEBS Lett.365 (2-3): 129–32. PMID7781764. doi:10.1016/0014-5793(95)00438-F.
Beck K, Hunter I, Engel J (1990). "Structure and function of laminin: anatomy of a multidomain glycoprotein". FASEB J.4 (2): 148–60. PMID2404817.
Yurchenco PD, Cheng YS (1993). "Self-assembly and calcium-binding sites in laminin. A three-arm interaction model". J. Biol. Chem.268 (23): 17286–99. PMID8349613.