Self-assembly of laminin isoforms

被引:201
|
作者
Cheng, YS
Champliaud, MF
Burgeson, RE
Marinkovich, MP
Yurchenco, PD
机构
[1] UNIV MED & DENT NEW JERSEY,ROBERT WOOD JOHNSON MED SCH,DEPT PATHOL & LAB MED,PISCATAWAY,NJ 08854
[2] PALO ALTO VET AFFAIRS HLTH CARE SYST,DIV DERMATOL,PALO ALTO,CA 94061
[3] STANFORD UNIV,SCH MED,DEPT DERMATOL,STANFORD,CA 94305
[4] HARVARD UNIV,MASSACHUSETTS GEN HOSP E,SCH MED,CUTANEOUS BIOL RES CTR,CHARLESTOWN,MA 02129
关键词
D O I
10.1074/jbc.272.50.31525
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The alpha, beta, and gamma subunits of basement membrane laminins can combine into different heterotrimeric molecules with either three full short arms (e.g. laminins-1-4), or molecules containing one (laminins-6-9) or more (laminin-5) short arm truncations. Laminin-1 (alpha 1 beta 1 gamma 1), self-assembles through a calcium-dependent thermal gelation requiring binding interactions between N-terminal short arm domains, forming a meshwork polymer thought to contribute to basement membrane architecture (Yurchenco, P. D., and Cheng, Y. S. (1993) J. Biol. Chem. 268, 17286-17299). However, it has been unclear whether other isoforms share this property, and if so, which ones. To begin to address this, we evaluated laminin-2 (alpha 2 beta 1 gamma 1), laminin-4 (alpha 2 beta 2 gamma 1), laminin-5 (alpha 3A beta 3 gamma 2), and laminin-6 (alpha 3A beta 1 gamma 1). The first two isoforms were found to self-aggregate in a concentration- and temperature-dependent manner and a close self-assembly relationship among laminins-1, -2, and -4 were demonstrated by: (a) polymerization of all three proteins was inhibited by EDTA and laminin-1 short arm fragments, (b) polymerization of laminin-1 was inhibited by fragments of laminins-2 and -4, (c) laminin-2 and, to a lesser degree, laminin-4, even well below their own critical concentration, co-aggregated with laminin-1, evidence for co-polymerization. Laminin-5, on the other hand, neither polymerized nor co-polymerized with laminin-1. Laminin-6 failed to co-aggregate with laminin-l at all concentrations evaluated, evidence for a lack of a related self-assembly activity. The data support the hypothesis that all three short arms are required for self-assembly and suggest that the short arm domain structure of laminin isoforms affect their architecture-forming properties in basement membranes.
引用
收藏
页码:31525 / 31532
页数:8
相关论文
共 50 条
  • [31] Computational self-assembly
    Curien, Pierre-Louis
    Danos, Vincent
    Krivine, Jean
    Zhang, Min
    THEORETICAL COMPUTER SCIENCE, 2008, 404 (1-2) : 61 - 75
  • [32] THE PRINCIPLES OF SELF-ASSEMBLY
    JAMES, B
    KYBERNETES, 1994, 23 (03) : 65 - 66
  • [33] Nanofabrication by self-assembly
    Ozin, Geoffrey A.
    Hou, Kun
    Lotsch, Bettina V.
    Cademartiri, Ludovico
    Puzzo, Daniel P.
    Scotognella, Francesco
    Ghadimi, Arya
    Thomson, Jordan
    MATERIALS TODAY, 2009, 12 (05) : 12 - 23
  • [34] Self-Assembly on the Computer
    Noro, Massimo G.
    CHEM, 2017, 2 (01): : 3 - 6
  • [35] Controlling self-assembly
    Gillard, RE
    Raymo, FM
    Stoddart, JF
    CHEMISTRY-A EUROPEAN JOURNAL, 1997, 3 (12) : 1933 - 1940
  • [36] Self-assembly of graphs
    Jeganathan, L.
    Krithivasan, K.
    Rama, R.
    2007 IEEE CONGRESS ON EVOLUTIONARY COMPUTATION, VOLS 1-10, PROCEEDINGS, 2007, : 1849 - +
  • [37] Directed Self-Assembly
    Sanders, Daniel P.
    Arnold, William H.
    JOURNAL OF MICRO-NANOLITHOGRAPHY MEMS AND MOEMS, 2012, 11 (03):
  • [38] SELF-ASSEMBLY OF THE FULLERENES
    SMALLEY, RE
    ACCOUNTS OF CHEMICAL RESEARCH, 1992, 25 (03) : 98 - 105
  • [39] Controlling self-assembly
    Abbott, S
    CHEMICAL COMMUNICATIONS, 2006, (07) : C13 - C13
  • [40] Nanocomputing by self-assembly
    Kari, Lila
    Unconventional Computation, Proceedings, 2007, 4618 : 27 - 27