Expanding the lysyl hydroxylase toolbox:: New insights into the localization and activities of lysyl hydroxylase 3 (LH3)

被引:88
作者
Myllyla, Raili [1 ]
Wang, Chunguang [1 ]
Heikkinen, Jari [1 ]
Juffer, Andre [1 ]
Lampela, Outi [1 ]
Risteli, Maija [1 ]
Ruotsalainen, Heli [1 ]
Salo, Antti [1 ]
Sipila, Laura [1 ]
机构
[1] Univ Oulu, Bioctr Oulu, Dept Biochem, FIN-90014 Oulu, Finland
关键词
D O I
10.1002/jcp.21036
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Hydroxylysine and its glycosylated forms, galactosylhydroxylysine and glucosylgalactosylhydroxylysine, are post-translational modifications unique to collagenous sequences. They are found in collagens and in many proteins having a collagenous domain in their structure. Since the last published reviews, significant new data have accumulated regarding these modifications. One of the lysyl hydroxylase isoforms, lysyl hydroxylase 3 (LH3), has been shown to possess three catalytic activities required sequentially to produce hydroxylysine and its glycosylated forms, that is, the lysyl hydroxylase (LH), galactosyltransferase (GT), and glucosyltransferase (GGT) activities. Studies on mouse models have revealed the importance of these different activities of LH3 in vivo. LH3 is the main molecule responsible for GGT activity in mouse embryos. A lack of this activity causes intracellular accumulation of type IV collagen, which disrupts the formation of basement membranes (BMs) during mouse embryogenesis and leads to embryonic lethality. The specific inactivation of the LH activity of LH3 causes minor alterations in the structure of the BM and collagen fibril organization, but does not affect the lifespan of mutated mice. Recent data from zebrafish demonstrate that growth cone migration depends critically on the LH3 glycosyltransferase domain. LH3 is located in the ER loosely associated with the membranes, but, unlike the other isoforms, LH3 is also found in the extracellular space in some tissues. LH3 is able to adjust the amount of hydroxylysine and hydroxylysine-linked carbohydrates of extracellular proteins in their native conformation, suggesting that it may have a role in matrix remodeling.
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页码:323 / 329
页数:7
相关论文
共 55 条
[1]   RAT LYSYL HYDROXYLASE - MOLECULAR-CLONING, MESSENGER-RNA DISTRIBUTION AND EXPRESSION IN A BACULOVIRUS SYSTEM [J].
ARMSTRONG, LC ;
LAST, JA .
BIOCHIMICA ET BIOPHYSICA ACTA-GENE STRUCTURE AND EXPRESSION, 1995, 1264 (01) :93-102
[2]  
Bateman A, 2002, NUCLEIC ACIDS RES, V30, P276, DOI [10.1093/nar/gkr1065, 10.1093/nar/gkp985, 10.1093/nar/gkh121]
[3]  
BATEMAN JF, 1996, EXTRACELLULAR MATRIX, V2, P22
[4]   Collagen cross-links [J].
Eyre, DR ;
Wu, JJ .
COLLAGEN: PRIMER IN STRUCTURE, PROCESSING AND ASSEMBLY, 2005, 247 :207-229
[5]   Fold recognition analysis of glycosyltransferase families: further members of structural superfamilies [J].
Franco, OL ;
Rigden, DJ .
GLYCOBIOLOGY, 2003, 13 (10) :707-712
[6]   Collagenous transmembrane proteins: Recent insights into biology and pathology [J].
Franzke, CW ;
Bruckner, P ;
Bruckner-Tuderman, L .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (06) :4005-4008
[7]   CLONING OF HUMAN LYSYL HYDROXYLASE - COMPLETE CDNA-DERIVED AMINO-ACID-SEQUENCE AND ASSIGNMENT OF THE GENE (PLOD) TO CHROMOSOME 1P36.3-]P36.2 [J].
HAUTALA, T ;
BYERS, MG ;
EDDY, RL ;
SHOWS, TB ;
KIVIRIKKO, KI ;
MYLLYLA, R .
GENOMICS, 1992, 13 (01) :62-69
[8]   MINOXIDIL SPECIFICALLY DECREASES THE EXPRESSION OF LYSINE HYDROXYLASE IN CULTURED HUMAN SKIN FIBROBLASTS [J].
HAUTALA, T ;
HEIKKINEN, J ;
KIVIRIKKO, KI ;
MYLLYLA, R .
BIOCHEMICAL JOURNAL, 1992, 283 :51-54
[9]   STRUCTURE AND EXPRESSION OF THE HUMAN LYSYL HYDROXYLASE GENE (PLOD) - INTRON-9 AND INTRON-16 CONTAIN ALU SEQUENCES AT THE SITES OF RECOMBINATION IN EHLERS-DANLOS-SYNDROME TYPE-VI PATIENTS [J].
HEIKKINEN, J ;
HAUTALA, T ;
KIVIRIKKO, KI ;
MYLLYLA, R .
GENOMICS, 1994, 24 (03) :464-471
[10]   Lysyl hydroxylase 3 is a multifunctional protein possessing collagen glucosyltransferase activity [J].
Heikkinen, J ;
Risteli, M ;
Wang, CG ;
Latvala, J ;
Rossi, M ;
Valtavaara, M ;
Myllylä, R .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (46) :36158-36163