The Crenarchaeon Ignicoccus hospitalis lives in symbiosis with Nanoarchaeum equitans providing essential cell components and nutrients to its symbiont. Ignicoccus hospitalis shows an intriguing morphology that points toward an evolutionary role in driving compartmentalization. Therefore, the bioenergetics of this archaeal host-symbiont system remains a pressing question. To date, the only electron acceptor described for I. hospitalis is elemental sulfur, but the organism comprises genes that encode for enzymes involved in nitrogen metabolism, e.g., one nitrate reductase and two octaheme cytochrome c, Igni_0955 (IhOCC) and Igni_1359. Herein, we detail functional and structural studies of the highly abundant IhOCC, including an X-ray crystal ...
In this study, the ATP synthase of Ignicoccus hospitalis was purified, characterized, and structural...
BACKGROUND: The relationship between the hyperthermophiles Ignicoccus hospitalis and Nanoarchaeum eq...
The enzyme cytochrome c nitrite reductase catalyses the six-electron reduction of nitrite to ammonia...
The Crenarchaeon Ignicoccus hospitalis lives in symbiosis with Nanoarchaeum equitans providing essen...
Three different multiheme cytochromes c were purified from cell extracts of the hyperthermophilic ar...
Three different multihaem cytochromes c were purified from cell extracts of the hyperthermophilic ar...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Members of the multihaem cytochrome c (MCC) family such as pentahaem cytochrome c nitrite reductase ...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Contains fulltext : 149084.pdf (publisher's version ) (Open Access
BACKGROUND: The relationship between the hyperthermophiles Ignicoccus hospitalis and Nanoarchaeum eq...
In this study, the ATP synthase of Ignicoccus hospitalis was purified, characterized, and structural...
BACKGROUND: The relationship between the hyperthermophiles Ignicoccus hospitalis and Nanoarchaeum eq...
The enzyme cytochrome c nitrite reductase catalyses the six-electron reduction of nitrite to ammonia...
The Crenarchaeon Ignicoccus hospitalis lives in symbiosis with Nanoarchaeum equitans providing essen...
Three different multiheme cytochromes c were purified from cell extracts of the hyperthermophilic ar...
Three different multihaem cytochromes c were purified from cell extracts of the hyperthermophilic ar...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Members of the multihaem cytochrome c (MCC) family such as pentahaem cytochrome c nitrite reductase ...
Cytochromes c (Cytc) are widespread electron transfer proteins and important enzymes in the global n...
Contains fulltext : 149084.pdf (publisher's version ) (Open Access
BACKGROUND: The relationship between the hyperthermophiles Ignicoccus hospitalis and Nanoarchaeum eq...
In this study, the ATP synthase of Ignicoccus hospitalis was purified, characterized, and structural...
BACKGROUND: The relationship between the hyperthermophiles Ignicoccus hospitalis and Nanoarchaeum eq...
The enzyme cytochrome c nitrite reductase catalyses the six-electron reduction of nitrite to ammonia...