The role of the hinge loop in domain swapping - The special case of bovine seminal ribonuclease

被引:28
作者
Picone, D
Di Fiore, A
Ercole, C
Franzese, M
Sica, F
Tomaselli, S
Mazzarella, L
机构
[1] Univ Naples Federico II, Dipartimento Chim, Complesso Univ Monte SantAngelo, I-80126 Naples, Italy
[2] CNR, Ist Biostrutture & Bioimmagini, I-80134 Naples, Italy
关键词
D O I
10.1074/jbc.M413157200
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
Bovine seminal ribonuclease (BS-RNase) is a covalent homodimeric enzyme homologous to pancreatic ribonuclease (RNase A), endowed with a number of special biological functions. It is isolated as an equilibrium mixture of swapped (MxM) and unswapped (M=M) dimers. The interchanged N termini are hinged on the main bodies through the peptide 16-22, which changes conformation in the two isomers. At variance with other proteins, domain swapping in BS-RNase involves two dimers having a similar and highly constrained quaternary association, mainly dictated by two interchain disulfide bonds. This provides the opportunity to study the intrinsic ability to swap as a function of the hinge sequence, without additional effects arising from dissociation or quaternary structure modifications. Two variants, having Pro(19) or the whole sequence of the hinge replaced by the corresponding residues of RNase A, show equilibrium and kinetic parameters of the swapping similar to those of the parent protein. In comparison, the x-ray structures of MxM indicate, within a substantial constancy of the quaternary association, a greater mobility of the hinge residues. The relative insensitivity of the swapping tendency to the substitutions in the hinge region, and in particular to the replacement of Pro19 by Ala, contrasts with the results obtained for other swapped proteins and can be rationalized in terms of the unique features of the seminal enzyme. Moreover, the results indirectly lend credit to the hypothesis that the major role of Pro19 resides in directing the assembly of the non-covalent dimer, the species produced by selective reduction of the interchain disulfides and considered responsible for the special biological functions of BS-RNase.
引用
收藏
页码:13771 / 13778
页数:8
相关论文
共 34 条
[1]   The swapping of terminal arms in ribonucleases: Comparison of the solution structure of monomeric bovine seminal and pancreatic ribonucleases [J].
Avitabile, F ;
Alfano, C ;
Spadaccini, R ;
Crescenzi, O ;
D'Ursi, AM ;
D'Alessio, G ;
Tancredi, T ;
Picone, D .
BIOCHEMISTRY, 2003, 42 (29) :8704-8711
[2]   Proline-dependent oligomerization with arm exchange [J].
Bergdoll, M ;
Remy, MH ;
Cagnon, C ;
Masson, JM ;
Dumas, P .
STRUCTURE, 1997, 5 (03) :391-401
[3]   Crystal structure of the dimeric unswapped form of bovine seminal ribonuclease [J].
Berisio, R ;
Sica, F ;
De Lorenzo, C ;
Di Fiore, A ;
Piccoli, R ;
Zagari, A ;
Mazzarella, L .
FEBS LETTERS, 2003, 554 (1-2) :105-110
[4]   Atomic resolution structures of ribonuclease A at six pH values [J].
Berisio, R ;
Sica, F ;
Lamzin, VS ;
Wilson, KS ;
Zagari, A ;
Mazzarella, L .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 2002, 58 :441-450
[5]  
BRUNGER AT, 1996, DEP MOL BIOPHYSICS B
[6]   From ribonuclease A toward bovine seminal ribonuclease: A step by step thermodynamic analysis [J].
Catanzano, F ;
Graziano, G ;
Cafaro, V ;
DAlessio, G ;
DiDonato, A ;
Barone, G .
BIOCHEMISTRY, 1997, 36 (47) :14403-14408
[7]   Thermodynamic analysis of the effect of selective monodeamidation at asparagine 67 in ribonuclease A [J].
Catanzano, F ;
Graziano, G ;
Capasso, S ;
Barone, G .
PROTEIN SCIENCE, 1997, 6 (08) :1682-1693
[8]   Origin of dimeric structure in the ribonuclease superfamily [J].
Ciglic, MI ;
Jackson, PJ ;
Raillard, SA ;
Haugg, M ;
Jermann, TM ;
Opitz, JG ;
Trabesinger-Rüf, N ;
Benner, SA .
BIOCHEMISTRY, 1998, 37 (12) :4008-4022
[9]   Letter to the Editor:: 1H and 15N sequential assignment and secondary structure of the monomeric N67D mutant of bovine seminal ribonuclease [J].
Crescenzi, O ;
Carotenuto, A ;
D'Ursi, AM ;
Tancredi, T ;
D'Alessio, G ;
Avitabile, F ;
Picone, D .
JOURNAL OF BIOMOLECULAR NMR, 2001, 20 (03) :289-290
[10]  
CRESTFIELD A M, 1962, Arch Biochem Biophys, VSuppl 1, P217