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== Introduction ==
= Introduction =


'''<scene name='42/421575/Mray/1'>MraY</scene>''', called also '''phospho-N-acetylmuramoyl-pentapeptide-transferase'''  or '''UDP-MurNAc-pentapeptide phosphotransferase''', with EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=2.7.8.13 2.7.8.13], is an integral membrane enzyme involved in peptidoglycan biosynthesis <ref name="one">PMID:29778697</ref> <ref name="two">PMID:27511599</ref>.MraY is encoded by the [https://www.ncbi.nlm.nih.gov/gene/1192662 mraY gene] and  belongs to a subfamily of the polyprenyl-phosphate N-acetyl hexosamine 1-phosphate transferase (PNPT) superfamily <ref name="three">PMID:23990562</ref>. MRAY is a promising candidate for the development of new antibiotics. In fact, it is the target of five classes of natural nucleoside inhibitors with potent antibacterial activity: the liposidomycins/caprazamycins, capuramycins, mureidomycins, muraymycins, and tunicamycins <ref name="two"/> <ref name="four">PMID:29438582</ref>.The structure presented in this page correspond to the MraY protein from ''Aquifex aeolicus'' (strain VF5), expressed in ''Escherichia coli'', in complex with carbacaprazamycin .<scene name='42/421575/Carbacaprazamycin/1'>Carbacaprazamycin</scene> is a chemically stable analog of caprazamycin nucleoside inhibitors <ref name="more1">DOI:10.1021/id5000376</ref>.  
== MraY ==
[http://proteopedia.org/wiki/index.php/4j72 MraY], called also '''phospho-N-acetylmuramoyl-pentapeptide-transferase'''  or '''UDP-MurNAc-pentapeptide phosphotransferase''', with EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=2.7.8.13 2.7.8.13], is an integral membrane enzyme involved in peptidoglycan biosynthesis <ref name="one">PMID:29778697</ref> <ref name="two">PMID:27511599</ref>.MraY is encoded by the [https://www.ncbi.nlm.nih.gov/gene/1192662 mraY gene] and  belongs to a subfamily of the polyprenyl-phosphate N-acetyl hexosamine 1-phosphate transferase (PNPT) superfamily <ref name="three">PMID:23990562</ref>. MRAY is a promising candidate for the development of new antibiotics. In fact, it is the target of five classes of natural nucleoside inhibitors with potent antibacterial activity: the liposidomycins/caprazamycins, capuramycins, mureidomycins, muraymycins, and tunicamycins <ref name="two"/> <ref name="four">PMID:29438582</ref>.The structure presented in this page correspond to the MraY protein from the thermophile [https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?mode=Info&srchmode=5&id=224324 ''Aquifex aeolicus'' strain VF5], expressed in ''Escherichia coli'', in complex with carbacaprazamycin.  
 
== Carbacaprazamycin  ==
 
<scene name='42/421575/Carbacaprazamycin/1'>Carbacaprazamycin</scene> is a chemically stable analog of caprazamycin nucleoside inhibitors <ref name="more1">DOI:10.1021/id5000376</ref>.  


Drug resistant bacteria are the cause of death of millions of people worldwide. In the USA alone, hospital infections associated with antibiotic-resistant pathogens cause 99 000 deaths per year<ref name="more2">PMID:30349322</ref>. The development of new antibiotics with new mechanism of action is urgent. Structural analysis of the binding of carbacaprazamycin to MraY provides a better understanding of the chemical logic of MraY inhibition, which can help in the development of novel approaches for the design of antibiotics targeting MraY.
Drug resistant bacteria are the cause of death of millions of people worldwide. In the USA alone, hospital infections associated with antibiotic-resistant pathogens cause 99 000 deaths per year<ref name="more2">PMID:30349322</ref>. The development of new antibiotics with new mechanism of action is urgent. Structural analysis of the binding of carbacaprazamycin to MraY provides a better understanding of the chemical logic of MraY inhibition, which can help in the development of novel approaches for the design of antibiotics targeting MraY.
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== Function ==
= Function =
bacteria <ref name="five">DOI:10.1039/b816215h</ref>. The cell wall provides bacteria a structural support and protection. In particular, it allows bacteria to maintain their cell shape at different osmotic pressures <ref name="six">PMID:26370936</ref>. Peptidoglycan is a cross-linked polymer of carbohydrates an amino acids and due to its biological relevance in Bacteria, it has been a major target for antibiotics <ref name="three"/> <ref name="five"/>.   
bacteria <ref name="five">DOI:10.1039/b816215h</ref>. The cell wall provides bacteria a structural support and protection. In particular, it allows bacteria to maintain their cell shape at different osmotic pressures <ref name="six">PMID:26370936</ref>. Peptidoglycan is a cross-linked polymer of carbohydrates an amino acids and due to its biological relevance in Bacteria, it has been a major target for antibiotics <ref name="three"/> <ref name="five"/>.   


Peptidoglycan biosynthesis involves three main stages. MraY is responsible for the second stage. First, the peptidoglycan precursor UDP-Nacetylmuramoyl (MurNAc)–pentapeptide is synthesized in the cytosol. Second, this hydrophilic precursor is attached to a lipid carrier, and the complex lipid carrier-precursor  is transported, through the membrane, to the periplasm. Third, the peptidoglycan precursors are polymerized to form the cell wall. MraY catalyzes the transfer of phospho-MurNAc-pentapeptide from hydrophilic substrate UDP-MurNAc-pentapeptide to the lipid carier (C55-P) in the presence of a Mg2+ cofactor. The product is the  undecaprenyl-pyrophosphoryl-MurNAcpentapeptide, also known as lipid I <ref name="three"/> <ref name="seven">PMID:31266949</ref> <ref name="eight">PMID:18081839</ref>.
Peptidoglycan biosynthesis involves three main stages. MraY is responsible for the second stage. First, the peptidoglycan precursor UDP-Nacetylmuramoyl (MurNAc)–pentapeptide is synthesized in the cytosol. Second, this hydrophilic precursor is attached to a lipid carrier, and the complex lipid carrier-precursor  is transported, through the membrane, to the periplasm. Third, the peptidoglycan precursors are polymerized to form the cell wall. MraY catalyzes the transfer of phospho-MurNAc-pentapeptide from hydrophilic substrate UDP-MurNAc-pentapeptide to the lipid carier (C55-P) in the presence of a Mg2+ cofactor. The product is the  undecaprenyl-pyrophosphoryl-MurNAcpentapeptide, also known as lipid I <ref name="three"/> <ref name="seven">PMID:31266949</ref> <ref name="eight">PMID:18081839</ref>.


== Structure ==
= Structure =




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== 3D related structures ==
= 3D related structures =


*[[4j72]]:Crystal Structure of polyprenyl-phosphate N-acetyl hexosamine 1-phosphate transferase (MraY)
*[[4j72]]:Crystal Structure of polyprenyl-phosphate N-acetyl hexosamine 1-phosphate transferase (MraY)

Revision as of 00:38, 17 January 2020

Crystal structure of two MraY dimers

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References