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Metabolite repression and inducer exclusion in the proline utilization gene cluster of Aspergillus nidulans

Abstract

The clustered prnB, prnC, and prnD genes are repressed by the simultaneous presence of glucose and ammonium. A derepressed mutation inactivating a CreA-binding site acts in cis only on the permease gene (prnB) while derepression of prnD and prnC is largely the result of reversal of inducer exclusion.

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Metabolite repression and inducer exclusion in the proline utilization gene cluster of Aspergillus nidulans

Author: Cubero, Beatriz; Gómez, Dennis; Scazzocchio, Claudio
Publisher: American Society for Microbiology
Year: 2000
Source: https://idus.us.es/bitstreams/967d5537-21e0-4669-a8da-e1af2ebec419/download
JOURNAL OF BACTERIOLOGY,
0021-9193/00/$04.00⫹0Jan. 2000, p. 233–235 Vol. 182, No. 1
Copy igh © 2000, Ame ican Socie y o Mic obiology. All Righ s Rese ed.
Me aboli e Rep ession and Induce Exclusion in he P oline
U iliza ion Gene Clus e o Aspe gillus nidulans
BEATRIZ CUBERO,† DENNIS GO
´MEZ, AND CLAUDIO SCAZZOCCHIO*
Ins i u de Ge´ne´ ique e Mic obiologie, Uni e si e´ Pa is-Sud, UMR CNRS C8621, 91405 O say Cedex, F ance
Recei ed 29 July 1999/Accep ed 8 Oc obe 1999
The clus e ed p nB,p nC, and p nD genes a e ep essed by he simul aneous p esence o glucose and
ammonium. A de ep essed mu a ion inac i a ing a C eA-binding si e ac s in cis only on he pe mease gene
(p nB) while de ep ession o p nD and p nC is la gely he esul o e e sal o induce exclusion.
All genes in ol ed in he u iliza ion o p oline in Aspe gillus
nidulans a e clus e ed in ch omosome VII (Fig. 1). p nB en-
codes he speci ic p oline pe mease, p nD encodes p oline
oxidase, and p nC encodes L-⌬
1
-py oline ca boxyla e dehyd o-
genase (11). p nA encodes a Zn-binuclea clus e ansc ip-
ional ac i a o media ing p oline induc ion (5, 14). p nX is a
gene o unknown unc ion whose inac i a ion does no a ec
p oline u iliza ion (8).
The s uc u al genes o he p oline u iliza ion clus e a e
subjec o speci ic induc ion by p oline and o me aboli e e-
p ession. Ca bon ep ession is media ed by C eA, a nega i e-
ac ing zinc inge p o ein (4, 7). Ni ogen de ep ession is
media ed by A eA, a posi i e-ac ing ansc ip ion ac o be-
longing o he GATA amily (1, 12). I was shown many yea s
ago ha hese genes a e ep essed signi ican ly only when bo h
ep essing ca bon and ni ogen sou ces a e p esen , i.e., in he
simul aneous p esence o ammonium and glucose (8). We ha e
shown ha his p ocess ope a es a he le el o he s eady s a e
o he cogna e mRNAs (5, 16) (Fig. 2A). O he da a indica e
ha he ep ession p ocess ope a es a he le el o ansc ip-
ion a he han a he le el o mRNA s abili y (6). We ha e
shown ha ep ession ope a es di ec ly on he p nB gene and
ha he exp ession o he p nA gene is no a ec ed by ep es-
sion (5, 6, 16). A model accoun ing o hese indings has been
p esen ed (9). Mu a ion in any o bo h o wo speci ic C eA
binding si es (p n
d
), loca ed be ween he p nD and p nB in e -
genic egion, esul s in de ep ession o p nB,p nC, and p nD
exp ession (5, 6, 16) (Fig. 2B).
A. nidulans s ains lacking a eA canno u ilize p oline as a
ni ogen sou ce in he p esence o glucose as he sole ca bon
sou ce. The p n
d
mu a ions supp ess his pheno ype. A s and
collabo a o s ha e aken ad an age o his pheno ype o show
ha a mu a ion in wha we now know o be one o he wo
physiologically essen ial C eA-binding si es (6) is cis dominan
and ans ecessi e in ela ion o p nB bu is cis and ans
dominan in ela ion o p nC and p nD (3). The cis- ans es
was ca ied ou by checking he g ow h on p oline o a ho-
mozygous a eA diploid mu an ca ying a p n
d
mu a ion placed
ei he cis o ans o mu a ions in each o he s uc u al genes.
The e a e wo ways o explain he esul s o he cis- ans es .
The i s explana ion is ha he e is no di ec ep ession o
p nD and/o p nC, bu ha he appa en ep ession o hese
genes is he esul o induce exclusion due o he ep ession o
he p nB-encoded pe mease by glucose, and hei appa en
de ep ession is he esul o e e sal o induce exclusion,
ac ing ia he de ep ession o p nB. The second is ha he
C eA-binding si es in he p nD-p nB in e genic egion di ec ly
a ec he exp ession o p nD and/o p nC, bu ha he only
limi ing s ep o g ow h in p oline unde ep essing condi ions
is he exp ession o he pe mease coded by he p nB gene. In
his no e, we demons a e ha induce exclusion is la gely and
pe haps exclusi ely esponsible o p nD and, o a lesse ex en ,
p nC ep ession.
The s a egy we ha e used o his aim is shown in Fig. 1. In
a s ain ca ying an in e nal dele ion o p nB,p nB337 esul ing
in a null pheno ype o p oline up ake (17), we ha e inse ed a
agmen o he p n clus e in ans. This agmen includes he
whole wild- ype p nB gene, he en i e p nB-p nD in e genic
egion, and also a sho (902-bp) segmen o he p nD gene.
Two s ains we e cons uc ed, one ca ies he wild- ype e-
p essible p omo e , he o he ca ies a p omo e con aining a
mu a ion in one o he essen ial C eA-binding si es, p n
d
22 (6,
16). This mu a ion changes he canonical C eA-binding si e
5⬘CTGGGG in o 5⬘CTGAGG. This base pai change is su i-
cien o p e en all binding o his si e o C eA in i o (6).
uaZ11 is a I/VIII ch omosomal ansloca ion, which spli s he
uaZ gene (13). This null mu a ion esul s in he inabili y o
u ilize u ic acid as he sole ni ogen sou ce. T ans o man s able
o u ilize u ic acid can be selec ed by ans o ming uaZ11
s ains wi h a plasmid con aining he 3⬘uaZ moie y, including
an o e lap wi h he 5⬘moie y. Thus, ans o ming sequences
a e always a ge ed o he 5⬘moie y o he uaZ gene. The p n
ansgenes we e in eg a ed adjacen o he uaZ locus by ans-
o ming a p nB337 uaZ11 s ain (see he legend o Fig. 1 o
he comple e geno ype) wi h plasmids pXCw and pXCp n
d
22
(Fig. 1). We can hus di ec ly in es iga e he le els o exp es-
sion o he p nD and p nC genes in ans o he p omo e
egion d i ing he ac i e p nB gene.
The esul s o his in es iga ion a e shown in Fig. 2B. (i) In
spi e o he p esence o he comple e p nD-p nB in e genic
egion, he p nB ansgene is exp essed less han he co e-
sponding sequences a he p n locus. This emains unex-
plained. Ne e heless, he a io be ween de ep essed and e-
p essed le els in he wild- ype p omo e and he a ios be ween
he le els o he wild ype and hose o he p n
d
22 mu an a e
he same o he gene in he clus e and o he ansgene. (ii)
The p n
d
22 mu a ion in he esiden clus e esul s in de ep es-
sion o p nB,p nC, and p nD, as p e iously desc ibed by
Sophianopoulou e al. (16). The same e ec is seen on he p nB
ansgene. (iii) In he de ep essed mu an , he s eady-s a e
le els o p nB a e highe han in he nonde ep essed (wild- ype
* Co esponding au ho . Mailing add ess: Ins i u de Ge´ne´ ique e
Mic obiologie, Uni e si e´ Pa is-Sud, Baˆ imen 409, UMR CNRS
C8621, 91405 O say Cedex, F ance. Phone: 33-01-69-15-63-56. Fax:
33-01-69-15-57-08. E-mail: [email p o ec ed].
† P esen add ess: Depa amen o de Gene ica, Uni e sidad de
Se illa, Se illa 41080, Spain.
233
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p omo e ) s ain e en unde condi ions o de ep ession o he
la e . I could be said ha he p n
d
22 mu a ion esul s also in
an “up-p omo e ” e ec . This is ue bo h o he ansgene
and o he esiden locus (16). (i ) We know om classical
gene ic es s ha p n
d
mu a ions a e cis dominan and ans
ecessi e in ela ion o p nB (3). Howe e , he le el o he
sho p nB message ansc ibed om he esiden gene ca y-
ing a dele ion mu a ion is no ep essed when in ans wi h he
p n
d
22 mu a ion. This could be expec ed i o e exp ession o
he p nB ansgene esul ed in induce accumula ion and i his
accumula ion could pa ially bypass ca bon and ni ogen me-
aboli e ep ession. Al e na i ely o addi ionally, he small e-
sidual message may be mo e s able han he wild- ype p nB
message. ( ) The c ucial obse a ion is ha he in oduc ion o
he p n
d
22 mu a ion esul s in comple e de ep ession o p nD
in ans and a conside able de ep ession o p nC in ans. The
mRNA o he unca ed p nD ansgene ollows he same e-
p ession pa e n as he wild- ype mRNA om he esiden
clus e . The conclusion is ha induce exclusion accoun s o
he ca bon and ni ogen ca aboli e ep ession o p nD and
p nC. ( i) Fo p nC, howe e , de ep ession in ans seems less
p onounced han de ep ession in cis. No he n blo s p o ide
semiquan i a i e es ima es, and we would no wish o claim
ha his small di e ence is signi ican . Howe e , a clea e ec
a a dis ance o sequences in he p nD-p nB in e genic egion
on he exp ession o p nC was demons a ed long ago wi h
classical gene ics (2). These esul s ha e now been con i med
a he le el o he exp ession o he p nC mRNA (15) (D.
Go´mez and C. Scazzocchio, unpublished esul s). The egion
in ol ed has been mapped (D. Go´mez and C. Scazzocchio,
unpublished esul s) and coincides wi h a egion in ol ed in
he in eg a ion o ca bon and ni ogen me aboli e ep ession
(9). This may sugges ha while induce exclusion is he main
pa ame e in ol ed in he ep ession o p nD, a mode a e
FIG. 1. (a) Schema ic ep esen a ion o p n clus e . The di ec ion o ansc ip ion o he genes (acco ding o e e ences 8, 9, 10, and 16) is indica ed by a ows. (b)
S a egy used o he cons uc ion o s ains CS-2289-1 and CS-2289-2. S ain uaZ11 p nB337 pabaA1 iboB2 yA2 was ans o med wi h he plasmids pXCw and
pXCp n
d
22. Bo h plasmids con ain he 3⬘end o he uaZ gene and he XhoI-ClaI egion o he p n clus e . pXCw con ains a wild- ype egion, and pXCp n
d
22 con ains
a egion ca ying a mu a ion in an essen ial C eA-binding si e (6). (c) Schema ic ep esen a ion o s ains CS-2289-1 and CS-2289-2. Fo each s ain, he uppe scheme
shows he esiden p n clus e , and he lowe scheme shows he p n sequences in eg a ed a he uaZ locus. The XhoI-ClaI agmen o p n clus e in eg a ed a he uaZ
locus con ains a unca ed copy o p nD gene (p nD ), he p nD-B in e genic egion, he p nB gene, and he p nB-C in e genic egion. The esiden p n locus ca ies
he p nB337 dele ion. The C eA-binding si es ac i e in ep ession a e ep esen ed as o als: da ks o als o wild- ype si es and a whi e o al o he p n
d
-22 mu an si e.
234 NOTES J. BACTERIOL.
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cis-ac ing e ec o he p nD-p nB in e genic egion migh also
be exe ed on he exp ession o p nC.
This wo k was suppo ed by Eu opean Union g an s BIO2-CT93-
0147 and BIO-CT96-0535. D.G. ecei ed a esea ch s uden ship om
he Minis e` e de l’Educa ion Na ional, de l’Enseignemen Supe ieu e
de la Reche che o he F ench Go e nmen .
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FIG. 2. No he n blo analysis o p n genes ansc ip ion. (A) Exp ession o he p nB,p nD, and p nC genes in a wild- ype s ain g own unde di e en condi ions.
Noninduced le els and all possible combina ions o ca bon and ni ogen ep essing condi ions a e shown. (B) mRNA le els o he p n genes in a s ain ca ying p n
d
22
and in s ains CS-2289-1 and CS-2289-2. Only wo condi ions a e shown: induced non ep ession (UF) and induced double ep ession (NG). mRNAs ex ac ed om
a wild- ype s ain g own unde iden ical condi ions a e also shown. Less RNA, as shown by he acnA panels, has been loaded o he la e , bu he s ong ep ession
a o ded by he simul aneous p esence o glucose and ammonium is clea ly isible and can be compa ed wi h ha o he equi alen mRNAs o panel A. Mycelia we e
g own o 8ha 37°C in 0.1% uc ose and 5 mM u ea and hen we e ei he le noninduced (NI) o induced wi h 20 mM L-p oline (UF). Simul aneously, hey ei he
we e le non ep essed (UF) o we e glucose ep essed (1% glucose, 5 mM u ea) (UG), ni ogen ep essed [20 mM diammonium D-(⫹)- a a e, 0.1% uc ose] (NF),
o ca bon and ni ogen ep essed [1% glucose, 20 mM diammonium D-(⫹)- a a e] (NG) o 2ha 37°C. The memb anes ha e been p obed o p nB,p nD,p nC,
and acnA (ac in), he la e as a con ol o RNA loading. The me hods used o RNA p epa a ion we e hose o Gonza´lez e al. (9).
VOL. 182, 2000 NOTES 235
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