Sandbox Reserved 191: Difference between revisions
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=Inhibitors of PPT-1= | =Inhibitors of PPT-1= | ||
'''<scene name='43/436866/Overall-3-rainbow/1'>PPT-1</scene>''' is a lysosomal enzyme, which has a serine [[lipase]] consensus sequence; a key characteristic of lysosomal enzymes. Despite having a serine lipase consensus sequence, PPT-1, is not deactivated by phenylmethylsulfonyl fluoride [https://en.wikipedia.org/wiki/PMSF (PMSF)], a common serine-modifying reagent. <scene name='58/580839/Hdsf_by_itself/1'>Hexadecylsulfonylfluoride</scene> (HDSF) is a serine-modifying reagent that is able to <scene name='58/580839/Basic-hdsf-nosurface/4'> bind and inhibit PPT-1</scene>. Unlike other inhibitors, <scene name='58/580839/Basic-hdsf-surfacelook/2'>HDSF is able to fit in the narrow, hydrophobic groove of PPT-1</scene> leading away from the active site of PPT-1. PMSF is unable to fit into this small narrow groove due to steric constraints that relate to the unique structure of the substrate-binding site of PPT-1. The sulphur of HDSF will <scene name='58/580839/Hdsf_bound_to_ser-115-best/1'>bind to SER-115 in the active site of PPT-1</scene> via a sulponylation reaction and thus will inhibit the actions of PPT-1<ref name="INCL">PMID:10801859</ref> | '''<scene name='43/436866/Overall-3-rainbow/1'>PPT-1</scene>''' is a lysosomal enzyme, which has a serine [[lipase]] consensus sequence; a key characteristic of lysosomal enzymes. Despite having a serine lipase consensus sequence, PPT-1, is not deactivated by phenylmethylsulfonyl fluoride [https://en.wikipedia.org/wiki/PMSF (PMSF)], a common serine-modifying reagent. <scene name='58/580839/Hdsf_by_itself/1'>Hexadecylsulfonylfluoride</scene> (HDSF) is a serine-modifying reagent that is able to <scene name='58/580839/Basic-hdsf-nosurface/4'> bind and inhibit PPT-1</scene>. Unlike other inhibitors, <scene name='58/580839/Basic-hdsf-surfacelook/2'>HDSF is able to fit in the narrow, hydrophobic groove of PPT-1</scene> leading away from the active site of PPT-1. PMSF is unable to fit into this small narrow groove due to steric constraints that relate to the unique structure of the substrate-binding site of PPT-1. The sulphur of HDSF will <scene name='58/580839/Hdsf_bound_to_ser-115-best/1'>bind to SER-115 in the active site of PPT-1</scene> via a sulponylation reaction and thus will inhibit the actions of PPT-1<ref name="INCL">PMID:10801859</ref>. | ||
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Despite the life-threatening diseases associated with decreased PPT-1 activity, inhibition of PPT-1 has also been shown to be a potential cancer target. Proteins involved in signaling and growth are post-translationally modified with palmitic acid. PPT-1 is involved with removing palmitate from lipid-modified proteins and this [http://en.wikipedia.org/wiki/Palmitoylation palmitoylation] is necessary for membrane association. When PPT-1 is over expressed, cells become protected from cell death, which leads to tumor formation. PPT-1 inhibition in cultured tumor cells led to selective tumor cell death | Despite the life-threatening diseases associated with decreased PPT-1 activity, inhibition of PPT-1 has also been shown to be a potential cancer target. Proteins involved in signaling and growth are post-translationally modified with palmitic acid. PPT-1 is involved with removing palmitate from lipid-modified proteins and this [http://en.wikipedia.org/wiki/Palmitoylation palmitoylation] is necessary for membrane association. When PPT-1 is over expressed, cells become protected from cell death, which leads to tumor formation. PPT-1 inhibition in cultured tumor cells led to selective tumor cell death <ref name="Kelly-1" />. | ||
== Mutations in Palmitoyl Protein Thiosterase 1== | == Mutations in Palmitoyl Protein Thiosterase 1== | ||
Mutations in Palmitoyl Protein Thioesterase 1 (PPT-1) can cause three types of disorders: [http://en.wikipedia.org/wiki/Infantile_neuronal_ceroid_lipofuscinosis Infantile Neuronal Ceroid Lipofuscinosis (INCL)], | Mutations in Palmitoyl Protein Thioesterase 1 (PPT-1) can cause three types of disorders: [http://en.wikipedia.org/wiki/Infantile_neuronal_ceroid_lipofuscinosis Infantile Neuronal Ceroid Lipofuscinosis (INCL)], [http://www.mun.ca/biology/dmarshall/One%20Pager.htm Late Infantile Neuronal Ceroid Lipofuscinosis (LINCL)], and [http://ghr.nlm.nih.gov/condition/juvenile-batten-disease Juvenile Neuronal Cerioid Lipofuscinosis (JNCL)]. The severity of most of the mutations are dependent upon their location inside the protein with respect to the catalytic triad. “Mutations that affect catalysis or substrate binding or disrupt proper folding of the core result in inactive enzymes and lead to a severe clinical phenotype” <ref name="mutations" />. Other mutations that cause less severe disorders can sometimes retain some residual thioesterase activity. These less severe mutations are believed to have small, local changes in areas of the protein that are far away from the catalytic <scene name='43/436866/Triad_w_zoom/2'>triad</scene> and palmitate binding site. A more detailed explanation of how some of the different disorders arise through mutations is explained below<ref name="mutations" />. | ||
Revision as of 17:32, 24 April 2014
| This Sandbox is Reserved from Feb 02, 2011, through Jul 31, 2011 for use by the Biochemistry II class at the Butler University at Indianapolis, IN USA taught by R. Jeremy Johnson. This reservation includes Sandbox Reserved 191 through Sandbox Reserved 200. |
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References
External Resources
[1] Wikipedia page on Gauche Effect
[2] Wikipedia page on palmitic acid.
[3] Wikipedia page on Infantile neuronal ceroid lipofuscinosis
[4] Wikipedia page on PMSF
[5] Wikipedia page on Protein Chaperones
[6] Wikipedia page on Endoplasmic reticulum
[7] Wikipedia page on Palmitoylation
[8] Page on Late Infantile neuronal ceroid lipofuscinosis
[9] Page on Juvenile neuronal ceroid lipofuscinosis


