Computational Advances for the Development of Allosteric Modulators and Bitopic Ligands in G Protein-Coupled Receptors
Allosteric modulators of G protein-coupled receptors (GPCRs), which target at allosteric sites, have significant advantages against the corresponding orthosteric compounds including higher selectivity, improved chemical tractability or physicochemical properties, and reduced risk of receptor oversen...
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description | Allosteric modulators of G protein-coupled receptors (GPCRs), which target at allosteric sites, have significant advantages against the corresponding orthosteric compounds including higher selectivity, improved chemical tractability or physicochemical properties, and reduced risk of receptor oversensitization. Bitopic ligands of GPCRs target both orthosteric and allosteric sites. Bitopic ligands can improve binding affinity, enhance subtype selectivity, stabilize receptors, and reduce side effects. Discovering allosteric modulators or bitopic ligands for GPCRs has become an emerging research area, in which the design of allosteric modulators is a key step in the detection of bitopic ligands. Radioligand binding and functional assays ([
35
S]GTPγS and ERK1/2 phosphorylation) are used to test the effects for potential modulators or bitopic ligands. High-throughput screening (HTS) in combination with disulfide trapping and fragment-based screening are used to aid the discovery of the allosteric modulators or bitopic ligands of GPCRs. When used alone, these methods are costly and can often result in too many potential drug targets, including false positives. Alternatively, low-cost and efficient computational approaches are useful in drug discovery of novel allosteric modulators and bitopic ligands to help refine the number of targets and reduce the false-positive rates. This review summarizes the state-of-the-art computational methods for the discovery of modulators and bitopic ligands. The challenges and opportunities for future drug discovery are also discussed. |
doi_str_mv | 10.1208/s12248-015-9776-y |
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35
S]GTPγS and ERK1/2 phosphorylation) are used to test the effects for potential modulators or bitopic ligands. High-throughput screening (HTS) in combination with disulfide trapping and fragment-based screening are used to aid the discovery of the allosteric modulators or bitopic ligands of GPCRs. When used alone, these methods are costly and can often result in too many potential drug targets, including false positives. Alternatively, low-cost and efficient computational approaches are useful in drug discovery of novel allosteric modulators and bitopic ligands to help refine the number of targets and reduce the false-positive rates. This review summarizes the state-of-the-art computational methods for the discovery of modulators and bitopic ligands. The challenges and opportunities for future drug discovery are also discussed.</description><identifier>ISSN: 1550-7416</identifier><identifier>EISSN: 1550-7416</identifier><identifier>DOI: 10.1208/s12248-015-9776-y</identifier><identifier>PMID: 25940084</identifier><language>eng</language><publisher>New York: Springer US</publisher><subject>Allosteric Regulation ; Allosteric Site ; Biochemistry ; Biomedical and Life Sciences ; Biomedicine ; Biotechnology ; Computer Simulation ; Computer-Aided Design ; Drug Design ; Drug Discovery - methods ; High-Throughput Screening Assays ; Humans ; Ligands ; Pharmacology/Toxicology ; Pharmacy ; Receptors, G-Protein-Coupled - metabolism ; Review ; Review Article</subject><ispartof>The AAPS journal, 2015-09, Vol.17 (5), p.1080-1095</ispartof><rights>American Association of Pharmaceutical Scientists 2015</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c512t-63afddc4f6b173a93a8c277db5bcbef9767f63d1497a82e86855cdf3ac07f62a3</citedby><cites>FETCH-LOGICAL-c512t-63afddc4f6b173a93a8c277db5bcbef9767f63d1497a82e86855cdf3ac07f62a3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktopdf>$$Uhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC4540734/pdf/$$EPDF$$P50$$Gpubmedcentral$$H</linktopdf><linktohtml>$$Uhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC4540734/$$EHTML$$P50$$Gpubmedcentral$$H</linktohtml><link.rule.ids>230,314,723,776,780,881,27903,27904,41467,42536,51298,53770,53772</link.rule.ids><backlink>$$Uhttps://www.ncbi.nlm.nih.gov/pubmed/25940084$$D View this record in MEDLINE/PubMed$$Hfree_for_read</backlink></links><search><creatorcontrib>Feng, Zhiwei</creatorcontrib><creatorcontrib>Hu, Guanxing</creatorcontrib><creatorcontrib>Ma, Shifan</creatorcontrib><creatorcontrib>Xie, Xiang-Qun</creatorcontrib><title>Computational Advances for the Development of Allosteric Modulators and Bitopic Ligands in G Protein-Coupled Receptors</title><title>The AAPS journal</title><addtitle>AAPS J</addtitle><addtitle>AAPS J</addtitle><description>Allosteric modulators of G protein-coupled receptors (GPCRs), which target at allosteric sites, have significant advantages against the corresponding orthosteric compounds including higher selectivity, improved chemical tractability or physicochemical properties, and reduced risk of receptor oversensitization. Bitopic ligands of GPCRs target both orthosteric and allosteric sites. Bitopic ligands can improve binding affinity, enhance subtype selectivity, stabilize receptors, and reduce side effects. Discovering allosteric modulators or bitopic ligands for GPCRs has become an emerging research area, in which the design of allosteric modulators is a key step in the detection of bitopic ligands. Radioligand binding and functional assays ([
35
S]GTPγS and ERK1/2 phosphorylation) are used to test the effects for potential modulators or bitopic ligands. High-throughput screening (HTS) in combination with disulfide trapping and fragment-based screening are used to aid the discovery of the allosteric modulators or bitopic ligands of GPCRs. When used alone, these methods are costly and can often result in too many potential drug targets, including false positives. Alternatively, low-cost and efficient computational approaches are useful in drug discovery of novel allosteric modulators and bitopic ligands to help refine the number of targets and reduce the false-positive rates. This review summarizes the state-of-the-art computational methods for the discovery of modulators and bitopic ligands. The challenges and opportunities for future drug discovery are also discussed.</description><subject>Allosteric Regulation</subject><subject>Allosteric Site</subject><subject>Biochemistry</subject><subject>Biomedical and Life Sciences</subject><subject>Biomedicine</subject><subject>Biotechnology</subject><subject>Computer Simulation</subject><subject>Computer-Aided Design</subject><subject>Drug Design</subject><subject>Drug Discovery - methods</subject><subject>High-Throughput Screening Assays</subject><subject>Humans</subject><subject>Ligands</subject><subject>Pharmacology/Toxicology</subject><subject>Pharmacy</subject><subject>Receptors, G-Protein-Coupled - metabolism</subject><subject>Review</subject><subject>Review Article</subject><issn>1550-7416</issn><issn>1550-7416</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2015</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNp9kU2P1CAYx4nRuOvqB_BiOHqp8lJKezEZR11NxmiMngmFp7NsKFSgk8y3l8msm_XiiZf_ywP5IfSSkjeUkf5tpoy1fUOoaAYpu-b4CF1SIUgjW9o9frC_QM9yviWEM07pU3TBxNAS0reX6LCN87IWXVwM2uONPehgIOMpJlxuAH-AA_i4zBAKjhPeeB9zgeQM_hrt6nWJKWMdLH7vSlzq9c7t6zFjF_A1_p5iAReabVwXDxb_AAPLKfIcPZm0z_Dibr1Cvz59_Ln93Oy-XX_ZbnaNEZSVpuN6sta0UzdSyfXAdW-YlHYUoxlhGmQnp45b2g5S9wz6rhfC2IlrQ6rANL9C7869yzrOYE39RtJeLcnNOh1V1E79qwR3o_bxoFrREsnbWvD6riDF3yvkomaXDXivA8Q1KyqJkJwNPa9WeraaFHNOMN2PoUSdeKkzL1V5qRMvdayZVw_fd5_4C6ga2NmQqxT2kNRtXFNFlf_T-getqaTq</recordid><startdate>20150901</startdate><enddate>20150901</enddate><creator>Feng, Zhiwei</creator><creator>Hu, Guanxing</creator><creator>Ma, Shifan</creator><creator>Xie, Xiang-Qun</creator><general>Springer US</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope><scope>5PM</scope></search><sort><creationdate>20150901</creationdate><title>Computational Advances for the Development of Allosteric Modulators and Bitopic Ligands in G Protein-Coupled Receptors</title><author>Feng, Zhiwei ; Hu, Guanxing ; Ma, Shifan ; Xie, Xiang-Qun</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c512t-63afddc4f6b173a93a8c277db5bcbef9767f63d1497a82e86855cdf3ac07f62a3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2015</creationdate><topic>Allosteric Regulation</topic><topic>Allosteric Site</topic><topic>Biochemistry</topic><topic>Biomedical and Life Sciences</topic><topic>Biomedicine</topic><topic>Biotechnology</topic><topic>Computer Simulation</topic><topic>Computer-Aided Design</topic><topic>Drug Design</topic><topic>Drug Discovery - methods</topic><topic>High-Throughput Screening Assays</topic><topic>Humans</topic><topic>Ligands</topic><topic>Pharmacology/Toxicology</topic><topic>Pharmacy</topic><topic>Receptors, G-Protein-Coupled - metabolism</topic><topic>Review</topic><topic>Review Article</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Feng, Zhiwei</creatorcontrib><creatorcontrib>Hu, Guanxing</creatorcontrib><creatorcontrib>Ma, Shifan</creatorcontrib><creatorcontrib>Xie, Xiang-Qun</creatorcontrib><collection>Medline</collection><collection>MEDLINE</collection><collection>MEDLINE (Ovid)</collection><collection>MEDLINE</collection><collection>MEDLINE</collection><collection>PubMed</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><collection>PubMed Central (Full Participant titles)</collection><jtitle>The AAPS journal</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Feng, Zhiwei</au><au>Hu, Guanxing</au><au>Ma, Shifan</au><au>Xie, Xiang-Qun</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Computational Advances for the Development of Allosteric Modulators and Bitopic Ligands in G Protein-Coupled Receptors</atitle><jtitle>The AAPS journal</jtitle><stitle>AAPS J</stitle><addtitle>AAPS J</addtitle><date>2015-09-01</date><risdate>2015</risdate><volume>17</volume><issue>5</issue><spage>1080</spage><epage>1095</epage><pages>1080-1095</pages><issn>1550-7416</issn><eissn>1550-7416</eissn><abstract>Allosteric modulators of G protein-coupled receptors (GPCRs), which target at allosteric sites, have significant advantages against the corresponding orthosteric compounds including higher selectivity, improved chemical tractability or physicochemical properties, and reduced risk of receptor oversensitization. Bitopic ligands of GPCRs target both orthosteric and allosteric sites. Bitopic ligands can improve binding affinity, enhance subtype selectivity, stabilize receptors, and reduce side effects. Discovering allosteric modulators or bitopic ligands for GPCRs has become an emerging research area, in which the design of allosteric modulators is a key step in the detection of bitopic ligands. Radioligand binding and functional assays ([
35
S]GTPγS and ERK1/2 phosphorylation) are used to test the effects for potential modulators or bitopic ligands. High-throughput screening (HTS) in combination with disulfide trapping and fragment-based screening are used to aid the discovery of the allosteric modulators or bitopic ligands of GPCRs. When used alone, these methods are costly and can often result in too many potential drug targets, including false positives. Alternatively, low-cost and efficient computational approaches are useful in drug discovery of novel allosteric modulators and bitopic ligands to help refine the number of targets and reduce the false-positive rates. This review summarizes the state-of-the-art computational methods for the discovery of modulators and bitopic ligands. The challenges and opportunities for future drug discovery are also discussed.</abstract><cop>New York</cop><pub>Springer US</pub><pmid>25940084</pmid><doi>10.1208/s12248-015-9776-y</doi><tpages>16</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Allosteric Regulation Allosteric Site Biochemistry Biomedical and Life Sciences Biomedicine Biotechnology Computer Simulation Computer-Aided Design Drug Design Drug Discovery - methods High-Throughput Screening Assays Humans Ligands Pharmacology/Toxicology Pharmacy Receptors, G-Protein-Coupled - metabolism Review Review Article |
title | Computational Advances for the Development of Allosteric Modulators and Bitopic Ligands in G Protein-Coupled Receptors |
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