Matches in SemOpenAlex for { <https://semopenalex.org/work/W2079222022> ?p ?o ?g. }
- W2079222022 endingPage "692" @default.
- W2079222022 startingPage "671" @default.
- W2079222022 abstract "The molecular structure of porcine pepsinogen at 1.8 A resolution has been determined by a combination of molecular replacement and multiple isomorphous phasing techniques. The resulting structure was refined by restrained-parameter least-squares methods. The final R factor [formula: see text] is 0.164 for 32,264 reflections with I greater than or equal to sigma (I) in the resolution range of 8.0 to 1.8 A. The model consists of 2785 protein atoms in 370 residues, a phosphoryl group on Ser68 and 238 ordered water molecules. The resulting molecular stereochemistry is consistent with a well-refined crystal structure with co-ordinate accuracy in the range of 0.10 to 0.15 A for the well-ordered regions of the molecule (B less than 15 A2). For the enzyme portion of the zymogen, the root-mean-square difference in C alpha atom co-ordinates with the refined porcine pepsin structure is 0.90 A (284 common atoms) and with the C alpha atoms of penicillopepsin it is 1.63 A (275 common atoms). The additional 44 N-terminal amino acids of the prosegment (Leu1p to Leu44p, using the letter p after the residue number to distinguish the residues of the prosegment) adopt a relatively compact structure consisting of a long beta-strand followed by two approximately orthogonal alpha-helices and a short 3(10)-helix. Intimate contacts, both electrostatic and hydrophobic interactions, are made with residues in the pepsin active site. The N-terminal beta-strand, Leu1p to Leu6p, forms part of the six-stranded beta-sheet common to the aspartic proteinases. In the zymogen the first 13 residues of pepsin, Ile1 to Glu13, adopt a completely different conformation from that of the mature enzyme. The C alpha atom of Ile1 must move approximately 44 A in going from its position in the inactive zymogen to its observed position in active pepsin. Electrostatic interactions of Lys36pN and hydrogen-bonding interactions of Tyr37pOH, and Tyr90H with the two catalytic aspartate groups, Asp32 and Asp215, prevent substrate access to the active site of the zymogen. We have made a detailed comparison of the mammalian pepsinogen fold with the fungal aspartic proteinase fold of penicillopepsin, used for the molecular replacement solution. A structurally derived alignment of the two sequences is presented." @default.
- W2079222022 created "2016-06-24" @default.
- W2079222022 creator A5025066333 @default.
- W2079222022 creator A5062362734 @default.
- W2079222022 creator A5063200605 @default.
- W2079222022 creator A5068323278 @default.
- W2079222022 date "1991-06-01" @default.
- W2079222022 modified "2023-09-26" @default.
- W2079222022 title "Refined structure of porcine pepsinogen at 1·8 Å resolution" @default.
- W2079222022 cites W144591571 @default.
- W2079222022 cites W1484111379 @default.
- W2079222022 cites W1506645419 @default.
- W2079222022 cites W1574059019 @default.
- W2079222022 cites W1575036854 @default.
- W2079222022 cites W1576868820 @default.
- W2079222022 cites W1590194625 @default.
- W2079222022 cites W1592737895 @default.
- W2079222022 cites W1592845636 @default.
- W2079222022 cites W1608052268 @default.
- W2079222022 cites W1651543921 @default.
- W2079222022 cites W1947219322 @default.
- W2079222022 cites W1963982969 @default.
- W2079222022 cites W1966041739 @default.
- W2079222022 cites W1966146417 @default.
- W2079222022 cites W1966721068 @default.
- W2079222022 cites W197075670 @default.
- W2079222022 cites W1971251199 @default.
- W2079222022 cites W1972190404 @default.
- W2079222022 cites W1977449349 @default.
- W2079222022 cites W1985469117 @default.
- W2079222022 cites W1987142003 @default.
- W2079222022 cites W1991713314 @default.
- W2079222022 cites W1993404146 @default.
- W2079222022 cites W2003074004 @default.
- W2079222022 cites W2004054583 @default.
- W2079222022 cites W2004370807 @default.
- W2079222022 cites W2013079753 @default.
- W2079222022 cites W2015751826 @default.
- W2079222022 cites W2017709960 @default.
- W2079222022 cites W2018200626 @default.
- W2079222022 cites W2022303345 @default.
- W2079222022 cites W2022525073 @default.
- W2079222022 cites W2022688716 @default.
- W2079222022 cites W2028659951 @default.
- W2079222022 cites W2030315684 @default.
- W2079222022 cites W2032168747 @default.
- W2079222022 cites W2034038760 @default.
- W2079222022 cites W2035409833 @default.
- W2079222022 cites W2050197612 @default.
- W2079222022 cites W2052406391 @default.
- W2079222022 cites W2055898626 @default.
- W2079222022 cites W2059401704 @default.
- W2079222022 cites W2061234567 @default.
- W2079222022 cites W2062515952 @default.
- W2079222022 cites W2070978663 @default.
- W2079222022 cites W2075072030 @default.
- W2079222022 cites W2077235131 @default.
- W2079222022 cites W2080142761 @default.
- W2079222022 cites W2082259624 @default.
- W2079222022 cites W2085318243 @default.
- W2079222022 cites W2091453940 @default.
- W2079222022 cites W2093561963 @default.
- W2079222022 cites W2095802747 @default.
- W2079222022 cites W2110033734 @default.
- W2079222022 cites W2113403117 @default.
- W2079222022 cites W2131107892 @default.
- W2079222022 cites W2136805858 @default.
- W2079222022 cites W2159857712 @default.
- W2079222022 cites W2165035813 @default.
- W2079222022 cites W2321060053 @default.
- W2079222022 cites W4250213770 @default.
- W2079222022 doi "https://doi.org/10.1016/0022-2836(91)90664-r" @default.
- W2079222022 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/2056534" @default.
- W2079222022 hasPublicationYear "1991" @default.
- W2079222022 type Work @default.
- W2079222022 sameAs 2079222022 @default.
- W2079222022 citedByCount "99" @default.
- W2079222022 countsByYear W20792220222012 @default.
- W2079222022 countsByYear W20792220222013 @default.
- W2079222022 countsByYear W20792220222014 @default.
- W2079222022 countsByYear W20792220222015 @default.
- W2079222022 countsByYear W20792220222016 @default.
- W2079222022 countsByYear W20792220222017 @default.
- W2079222022 countsByYear W20792220222019 @default.
- W2079222022 countsByYear W20792220222020 @default.
- W2079222022 countsByYear W20792220222021 @default.
- W2079222022 countsByYear W20792220222022 @default.
- W2079222022 countsByYear W20792220222023 @default.
- W2079222022 crossrefType "journal-article" @default.
- W2079222022 hasAuthorship W2079222022A5025066333 @default.
- W2079222022 hasAuthorship W2079222022A5062362734 @default.
- W2079222022 hasAuthorship W2079222022A5063200605 @default.
- W2079222022 hasAuthorship W2079222022A5068323278 @default.
- W2079222022 hasConcept C104317684 @default.
- W2079222022 hasConcept C112247285 @default.
- W2079222022 hasConcept C115624301 @default.
- W2079222022 hasConcept C138268822 @default.
- W2079222022 hasConcept C154945302 @default.