Abstract

The five conserved tryptophan residues in the cellulose binding domain of xylanase A from Pseudomonas fluorescens subsp. cellulosa were replaced with alanine and phenylalanine. The mutated domains were fused to mature alkaline phosphatase, and the capacity of the hybrid proteins to bind cellulose was assessed. Alanine substitution of the tryptophan residues, in general, resulted in a significant decrease in the capacity of the cellulose binding domains to bind cellulose. Mutant domains containing phenylalanine substitution retained some affinity for cellulose. The C-terminal proximal tryptophan did not play an important role in ligand binding, while Trp13, Trp34 and Trp38 were essential for the cellulose binding domain to retain cellulose binding capacity. Data presented in this study suggest major differences in the mechanism of cellulose attachment between Pseudomonas and Cellulomonas cellulose binding domains.

References

1

Gilkes
N.R.
Henrissat
B.
Kilburn
D.G.
Miller
R.C.
Warren
R.A.J.
(
1991
)
Microbiol. Rev.
,
55
,
303
315
.

2

Gilkes
N.R.
Warren
R.A.J.
Miller
R.C.
Kilburn
D.G.
(
1988
)
J. Biol. Chem.
,
263
,
10401
10407
.

3

Ferreira
L.M.A.
Durrant
A.J.
Hall
J.
Hazlewood
G.P.
Gilbert
H.J.
(
1990
)
Biochem. J.
,
269
,
261
264
.

4

Ferreira
L.M.A.
Hazlewood
G.P.
Barker
P.J.
Gilbert
H.J.
(
1991
)
Biochem. J.
,
279
,
793
799
.

5

Béguin
P.
(
1990
)
Annu. Rev. Microbiol.
,
44
,
219
248
.

6

Gilkes
N.R.
Jervis
E.
Henrissat
B.
Tekant
B.
Miller
R.C.
Warren
A.J.R.
Kilburn
D.G.
(
1992
)
J. Biol. Chem.
,
267
,
6743
6749
.

7

Hall
J.
Hazlewood
G.P.
Huskisson
N.S.
Durrant
A.J.
Gilbert
H.J.
(
1989
)
Mol. Microbiol.
,
3
,
1211
1219
.

8

Chambers
S.P.
Prior
S.E.
Barstow
D.A.
Minton
N.P.
(
1988
)
Gene
,
68
,
139
149
.

9

Kunkel
T.A.
(
1985
) 9th edn.,
82
, In
Proc. Natl. Acad. Sci. USA
, pp
488
492
.

10

Kellett
L.E.
Poole
D.M.
Ferreira
L.M.A.
Durrant
A.J.
Hazlewood
G.P.
Gilbert
H.J.
(
1990
)
Biochem. J.
,
272
,
369
376
.

11

Lowry
O.H.
Rosebrough
N.J.
Farr
A.L.
Randall
R.J.
(
1951
)
J. Biol. Chem.
,
193
,
265
275
.

12

Laemmli
U.K.
(
1970
)
Nature (London)
,
227
,
680
685
.

13

Towbin
H.
Staehlin
T.
Gordon
J.
(
1979
) 9th edn.,
76
, In
Proc. Natl. Acad. Sci. USA
, pp
4350
4354
.

14

Spurlino
J.C.
Lu
G.-Y.
Quiocho
F.A.
(
1991
)
J. Biol. Chem.
,
266
,
5202
5219
.

15

Quiocho
F.A.
(
1986
)
Annu. Rev. Biochem.
,
55
,
287
315
.

16

Gilkes
N.R.
Kilburn
D.G.
Miller
R.C.
Warren
R.A.J.
(
1989
)
J. Biol. Chem.
,
264
,
17802
17808
.

17

Ong
E.
Greenwood
J.M.
Gilkes
N.R.
Kilburn
D.G.
Miller
R.C.
Warren
R.A.J.
(
1989
)
Trends Biotechnol.
,
7
,
239
243
.

18

Gilbert
H.J.
Hall
J.
Hazlewood
G.P.
Ferreira
L.M.A.
(
1990
)
Mol. Microbiol.
,
4
,
759
767
.

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