Cytochrome c is a small protein found in the inner membrane of the mitochondria of human and animal cells. Humans have chains of about 104 cytochrome c's.
Since humans can breath on land, they are mammals since their close relatives of chimpanzees
Humans belong to the biological genus Homo.
No, humans belong to the class Mammalia, while bears belong to the class Mammalia as well. Both humans and bears are mammals, but they belong to different orders (Primates for humans and Carnivora for bears).
Its genus is ;Cucurbita and it have many specie name as so its variety like: C. argyrosperma C. ficifolia C. maxima C. moschata C. pepo
Humans belong to the order Primates within the class Mammalia.
The great apes (such as chimpanzees and gorillas) have cytochrome c sequences that are most similar to human cytochrome c. They share a common ancestor with humans relatively recently in evolutionary terms, resulting in a high degree of sequence similarity.
Thesus monkey is the most closely related to Humans because it has the least number of differences in cytochrome c.
Cytochrome c is a protein that is typically described as brown or brownish-red in color.
One can buy cytochrome c, a highly conserved model protein for molecular evolution. After supplied, the cytochrome c product stays stable for five years.
because chimpanzes are epic. biology sucks
Humans are more closely related to chimpanzees than garden snails.
Cytochrome c is a protein present in all aerobic organisms, and its sequence is highly conserved across species. By comparing the amino acid sequences of cytochrome c among different organisms, scientists can infer evolutionary relationships. The similarities and differences in cytochrome c sequences provide evidence for common ancestry and the process of evolution.
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humans and chimpanzees share a common ancestor. The similarity in the amino acid sequence suggests that the gene coding for cytochrome c has been conserved over evolutionary time, pointing to a close evolutionary relationship between the two species.
Chimpanzee
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The sequence of electron carriers in the electron transport chain starting with the least electronegative includes NADH dehydrogenase, ubiquinone, cytochrome b-c1 complex, cytochrome c, and cytochrome oxidase. These carriers are responsible for transferring electrons, creating a proton gradient, and ultimately generating ATP through oxidative phosphorylation.