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GPR: GCSH and LIAS and FDX1 and FDXR and (NFU1 or ISCA1 or ISCA2) (ENSG00000140905 and ENSG00000121897 and ENSG00000137714 and ENSG00000161513 and (ENSG00000169599 or ENSG00000135070 or ENSG00000165898))
Explanation:
Lipoic acid is synthesized from octanoyl-ACP in the mitochondria by strictly mitochondrial enzymes and is only attached to strictly mitochondrial enzymes (sources: 1, 2))
LIPT2 transfers an octanoyl from NDUFAB1 (ENSG00000004779) (which functions as the mitochondrial Acyl-Carrier Protein (ACP)) to GCSH (ENSG00000140905), not apoA1 (MAM01350c), (same sources as above)
Since all lipoylated proteins appear to be strictly mitochondrial, the current cytosolic metabolites for [protein]-N6-(lipoyl)lysine and [protein]-N6-(dihydrolipoyl)lysine should just be completely replaced with mitochondrial ones. These metabolites also participate in MAR00022, MAR06404, MAR08433, and MAR08434, so those would also need to be edited. Since the other metabolites in MAR06404 are cytosolic NAD(H), they can also just be replaced with mitochondrial NAD(H). See Misrepresentation of Catalytic Activity of LIPT1 #683 re: MAR08433 and MAR08434 and why this would not make MAR06404 redundant with MAR06409.
The sulfur atoms used by LIAS come from a 4Fe4S iron-sulfur cluster bound to LIAS, and the sulfur atoms in that iron-sulfur cluster ultimately come from cysteine, not PAPS (MAM02682c; sources: 1, 2, 3, 4). New 2Fe2S iron-sulfur clusters are produced by a complex formed by ISCU2, NFS1, ISD11 (LYRM4), NDUFAB1, FXN, FDX2, and FDXR (sources: 1, 2).
That complex only produces 2Fe2S clusters, and combining two of those into a 4Fe4S cluster involves HSC20 (HSCB), HSPA9, GLRX5, GRPEL1, ISCA1, ISCA2, IBA57, FDX2, FXR, hydrolysis of two ATP, and oxidation of one NADPH. While LIAS can only use 4Fe4S clusters, some proteins apparently use 2Fe2S clusters, so I’m proposing two separate reactions for each of these steps.
Newly synthesized 4Fe4S clusters are primarily delivered to LIAS by NFU1, but can also be delivered directly by ISCA1 and ISCA2 to a lesser extent (source), and since these delivery proteins tend to specific for a few particular 4Fe4S-using proteins, I’m proposing that (NFU1 or ISCA1 or ISCA2) be added to the GPR of MAR06403.
As far as I can tell, each turnover of LIAS only requires 1 NADPH, not 7, since the NADPH only seems to be used to reduce FDX1 (source), which reduces the iron-sulfur cluster that LIAS uses to generate 5’-deoxyadenosyl radicals. FDX1 does a one-electron reduction of that iron-sulfur cluster twice (once for each of the two sulfur atoms attached to the octanoyl residue), and NADPH does two-electron reductions, so each turnover of LIAS requires oxidizing one NADPH. Relatedly, FDX1 and FDXR should also be added to the GPR of MAR06403.
After each turnover of LIAS, the remaining 2 sulfur atoms and 4 iron atoms from the 4Fe4S cluster that gets partially dismantled are released into solution as Fe2+ and S2- (sources: 1, 2). I used HS- instead of S2- in the new version of MAR06403 above because S2- is a very strong base and rapidly becomes HS- in physiological pH ranges, and there was already a metabolite for HS- but not S2- in Human-GEM. Two more reactions also need to be added to connect this new mitochondrial HS- with the existing sulfur metabolism reactions:
Human-GEM does not currently have a mitochondrial metabolite for 5’-deoxyadenosine. Apparently, nobody really knows what happens to 5’-deoxyadenosine in human cells (source), so I’m just proposing adding a gene-less [m] -> [c] transport reaction to keep the new mitochondrial 5’-deoxyadenosine in MAR06403 connected to the existing [c] <-> [e] transport reaction MAR09637.
Proposed Changes:
Create new metabolite MAM02643m to represent mitochondrial octanoyl-ACP (only necessary if changes proposed in Mitochondrial Fatty Acid Synthesis #684 haven’t already been implemented)
Create new metabolite MAM02042m to represent mitochondrial HS-
Create a new metabolite MAM01098m to represent mitochondrial 5’-deoxyadenosine
Create a new metabolite to represent a mitochondrial 4Fe4S iron-sulfur cluster:
formula: S4Fe4
charge +2
InChI: InChI=1S/4Fe.4S/q;;2*+1;;;;
CHEBI:33722
Create a new metabolite to represent a mitochondrial 2Fe2S iron-sulfur cluster:
formula: S2Fe2
charge: +2
InChI: InChI=1S/2Fe.2S/q2*+1;;
CHEBI:33737
Create a new metabolite to represent mitochondrial GSSH:
GPR: ENSG00000100209 and ENSG00000109519 and ENSG00000113013 and ENSG00000135070 and ENSG00000161513 and ENSG00000165898 and ENSG00000181873 and ENSG00000182512 and ENSG00000267673
references: PMID:31918395;PMID:31935115
Create a new reaction to represent synthesis of 2Fe2S iron-sulfur clusters in mitochondria:
Background:
Depends on changes proposed in #683, and, to a lesser extent, #682 and #684
Lipoic acid biosynthesis from octanoyl-ACP is currently represented by
MAR06402
:MAM01350c + MAM02643c --> MAM00184c + MAM00210c
)ENSG00000175536
)and
MAR06403
:MAM00210c + 5 MAM02039c + 7 MAM02555c + 2 MAM02682c + 2 MAM02877c --> MAM00209c + 2 MAM01098c + 6 MAM02040c + 2 MAM02471c + 7 MAM02554c + 2 MAM02681c
)ENSG00000121897
)These papers (1, 2, 3, 4, 5, 6, 7, 8) collectively indicate that these two reactions should instead look like:
MAR06402
:MAM02643m --> MAM00210m + MAM02484m
)ENSG00000004779 and ENSG00000140905 and ENSG00000175536
)and
MAR06403
:MAM00210m + 3 MAM02039m + MAM02555m + 2 MAM02877m + <4Fe4S> --> MAM00208m + 2 MAM01098m + 4 MAM01821m + 2 MAM02042m + 2 MAM02471m + MAM02554m
)ENSG00000140905 and ENSG00000121897 and ENSG00000137714 and ENSG00000161513 and (ENSG00000169599 or ENSG00000135070 or ENSG00000165898)
)Explanation:
ENSG00000004779
) (which functions as the mitochondrial Acyl-Carrier Protein (ACP)) to GCSH (ENSG00000140905
), not apoA1 (MAM01350c
), (same sources as above)MAR00022
,MAR06404
,MAR08433
, andMAR08434
, so those would also need to be edited. Since the other metabolites inMAR06404
are cytosolic NAD(H), they can also just be replaced with mitochondrial NAD(H). See Misrepresentation of Catalytic Activity of LIPT1 #683 re:MAR08433
andMAR08434
and why this would not makeMAR06404
redundant withMAR06409
.MAM02682c
; sources: 1, 2, 3, 4). New 2Fe2S iron-sulfur clusters are produced by a complex formed by ISCU2, NFS1, ISD11 (LYRM4), NDUFAB1, FXN, FDX2, and FDXR (sources: 1, 2).MAR06403
.MAR06403
.MAR06403
above because S2- is a very strong base and rapidly becomes HS- in physiological pH ranges, and there was already a metabolite for HS- but not S2- in Human-GEM. Two more reactions also need to be added to connect this new mitochondrial HS- with the existing sulfur metabolism reactions:ENSG00000137767
), references:PMID:25225291
,RHEA:62608
MAR06911
(redox between FAD and ubiquinone)ENSG00000105755
), references:PMID:25225291
, E.C.:1.13.11.18
,RHEA:12981
MAR06403
connected to the existing [c] <-> [e] transport reactionMAR09637
.Proposed Changes:
MAM02643m
to represent mitochondrial octanoyl-ACP (only necessary if changes proposed in Mitochondrial Fatty Acid Synthesis #684 haven’t already been implemented)MAM02042m
to represent mitochondrial HS-MAM01098m
to represent mitochondrial 5’-deoxyadenosineS4Fe4
InChI=1S/4Fe.4S/q;;2*+1;;;;
CHEBI:33722
S2Fe2
InChI=1S/2Fe.2S/q2*+1;;
CHEBI:33737
C10H17N3O6S2
InChI=1S/C10H17N3O6S2/c11-5(10(18)19)1-2-7(14)13-6(4-21-20)9(17)12-3-8(15)16/h5-6,20H,1-4,11H2,(H,12,17)(H,13,14)(H,15,16)(H,18,19)/t5-,6-/m0/s1
C17267
,CHEBI:52857
ENSG00000100209
, HSCBENSG00000105755
, ETHE1ENSG00000109519
, GRPEL1ENSG00000113013
, HSPA9ENSG00000135070
, ISCA1ENSG00000136003
, ISCU2ENSG00000137714
, FDX1ENSG00000137767
, SQORENSG00000165898
, ISCA2ENSG00000169599
, NFU1ENSG00000181873
, IBA57ENSG00000182512
, GLRX5ENSG00000214113
, LRYM4ENSG00000244005
, NFS1ENSG00000267673
, FDX2MAM00210c
withMAM00210m
MAM00210c
to create the entry forMAM00210m
MAM00209c
withMAM00209m
inMAR00022
,MAR06404
,MAR08433
, andMAR20168
MAM00209c
to create the entry forMAM00209m
MAM00208c
withMAM00208m
inMAR06404
andMAR08434
MAM00208c
to create the entry forMAM00208m
MAR06402
toMAM02643m -> MAM00210m + MAM02484m
, GPR:ENSG00000004779 and ENSG00000140905 and ENSG00000175536
, references:PMID:24777537;PMID:28757203
MAR06403
toMAM00210m + 3 MAM02039m + MAM02555m + 2 MAM02877m + <4Fe4S> --> MAM00208m + 2 MAM01098m + 4 MAM01821m + 2 MAM02042m + 2 MAM02471m + MAM02554m
ENSG00000121897 and ENSG00000137714 and ENSG00000140905 and ENSG00000161513 and (ENSG00000135070 or ENSG00000165898 or ENSG00000169599)
PMID:24777537;PMID:31493409;PMID:36281303;PMID:37453661
MAM02553c
withMAM02553m
,MAM02552c
withMAM02552m
, andMAM02039c
withMAM02039m
inMAR06404
ENSG00000137767
to the GPR ofMAR06911
2 MAM01371m + 2 MAM02040m + MAM02555m + 2 <2Fe2S> -> 2 MAM01285m + 3 MAM02039m + MAM02554m + 2 MAM02751m + <4Fe4S>
ENSG00000100209 and ENSG00000109519 and ENSG00000113013 and ENSG00000135070 and ENSG00000161513 and ENSG00000165898 and ENSG00000181873 and ENSG00000182512 and ENSG00000267673
PMID:31918395;PMID:31935115
2 MAM01628m + 2 MAM01821m + MAM02555m -> 2 MAM01307m + MAM02039m + MAM02554m + <2Fe2S>
ENSG00000004779 and ENSG00000136003 and ENSG00000161513 and ENSG00000165060 and ENSG00000214113 and ENSG00000244005 and ENSG00000267673
PMID:31918395;PMID:31935115
MAM01802m + MAM02026m + MAM02042m -> MAM01803m + <GSSH>
ENSG00000137767
PMID:25225291
1.8.5.8
R11929
,RHEA:62608
MAM02040m + MAM02630m + <GSSH> -> MAM02026m + 2 MAM02039m + MAM02949m
ENSG00000105755
PMID:25225291
1.13.11.18
R08678
,RHEA:12981
MAM01098m -> MAM01098c
, references:PMID:34126623
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