Abstract

We previously published a series of 8-methoxypirazolo[1,5-a]quinazolines (PQs) and their 4,5-dihydro derivatives (4,5(H)PQ) bearing the (hetero)arylalkylester group at position 3 as ligands at the γ-aminobutyric type A (GABAA) subtype receptor. Continuing the study in this field, we report here the design and synthesis of 3-(hetero)arylpyrazolo[1,5-a]quinazoline and 3-(hetero)aroylpyrazolo[1,5-a]quinazoline 8-methoxy substituted as interesting analogs of the above (hetero)arylalkylester, in which the shortening or the removal of the linker between the 3-(hetero)aryl ring and the PQ was performed. Only compounds that are able to inhibit radioligand binding by more than 80% at 10 μM have been selected for electrophysiological studies on recombinant α1β2γ2L GABAA receptors. Some compounds show a promising profile. For example, compounds 6a and 6b are able to modulate the GABAAR in an opposite manner, since 6b enhances and 6a reduces the variation of the chlorine current, suggesting that they act as a partial agonist and an inverse partial agonist, respectively. The most potent derivative was 3-(4-methoxyphenylcarbonyl)-8-methoxy-4,5-dihydropyrazolo[1,5-a] quinazoline 11d, which reaches a maximal activity at 1 μM (+54%), and it enhances the chlorine current at ≥0.01 μM. Finally, compound 6g, acting as a null modulator at α1β2γ2L, shows the ability to antagonize the full agonist diazepam and the potentiation of CGS 9895 on the new α+/β− ‘non-traditional’ benzodiazepine site.

Highlights

  • The achievement of the first crystal structure of the β3 homopentamer human GABAA receptor at 3Å resolution [16] strongly improved the knowledge of the structural features of GABAAR

  • These results were recently corroborated by Zhu et al [17], who obtained two high-resolution structures of GABAA receptor, in complex with GABA and flumazenil, using the cryo-electron microscopy

  • Compounds that showed a certain modulation of chlorine current are 3-(hetero)aroylpyrazolo[1,5-a]quinazolines, and 6a and 6b were the most representative compounds

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Summary

Introduction

The achievement of the first crystal structure of the β3 homopentamer human GABAA receptor at 3Å resolution [16] strongly improved the knowledge of the structural features of GABAAR. These results were recently corroborated by Zhu et al [17], who obtained two high-resolution structures of GABAA receptor, in complex with GABA and flumazenil, using the cryo-electron microscopy. These ligands showed high binding affinity (Ki = 0.2–34 nM) and anxiolityc-like/antihyperalgesic activity [18]. Continuing the study on ligands at the GABAA subtype receptor, we considered the shortening or the removal of the linker between the 3-I(nht.eJ.tMeorl.oS)cia. 2r0y19l,r20in, xg and the PQ core as an interesting chemical modification o3fotfh21e previously reported esterlidgaenrdivs aattitvheesG.ATBhAuA ss,ubthtyepesyrencetphteosr,isweofco8n-smideertehdothxeysh3o-(rtheenitnegroor)athreylrpemyorvaazloolfoth[1e,l5in-kae]rquinazoline and 3-(hetero)baertowyeelnpythreaz3-o(hloet[e1ro,5)a-ray]lqruinignaanzdoltihneePwQ acosreplaasnanneidnt.erTeshtiensgecchoemmicpalomuonddifsicaatrioenmofosthtelikely more metabolically pstreavbioleustlhy erenpoerstetedresdteerrdiveraivtiavtievses[. 1T8h]u,s,atnhde sayrnethsestirsuocft8u-mraeltlhyoxsytr3i-c(htleyterroe)laarytelpdyrtaozocloo[m1,5p- ounds that have been claami]mqousetindliakzetoloylinmbeoearenGdmAe3t-Ba(hbAeotleAicraols)layurobsyttalybplypereathzeornleoce[1set,p5e-rtado]qeruriivlniaagtziavonelisnd[e1s8w]s,auasncpdhlaanraensestdIr.uncTdthuierpsaellloycnosmt,ripOcotlcuyinrndeaslaptaerldeon [4,19,20], and compountodscoomfpotuynpdes tIhaat nhdaveIIbe[e2n1c–la2i3m]ed(FtoigbuerGeA1B,APA asunbetylpAe )re.cAepltol rolifgatnhdessseucchoams pInoduipnlodn,s belong to the pyrazolopOycriinmapildonin[4e,s1,9,2tr0i],azanodlocpomhptaoulanzdisnoef, toyprepIyarnadzoIIlo[2b1e–2n3z] o(Ftirgiuarzein1,ePfaanmel iAly)., Awllhoof stehecseore is recovered in ocwuohrmonpseoeucwonrdessyibsneeltaohsnielgystrioeztcehodevepPryerQdazinoclooomupryprniemowuidsniyndnetssh, e(trsFiiazizgeoduloPrpeQh1tcao,lmaPzpainoneu,enoldrBsp()yF.riagzuorleo1b,ePnaznoetrliBaz).ine family,

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