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Peroxisomes are specialized organelles present in fungi, plant, and animal cells. It can vary in number, size, morphology, and activity depending on the type of tissue and the nutritional state of the cell. For example, cells with active lipid metabolism, such as adipocytes, neurons, and hepatocytes, have more peroxisomes than other cells in the body. Besides their primary role in breaking down complex organic molecules, peroxisomes can also synthesize specific macromolecules and participate in redox signaling.

Hydrogen peroxide: recycle and reuse

Peroxisomes act as a source as well as a sink for hydrogen peroxide. Oxidation of fatty acids releases hydrogen peroxide, which can either be degraded by catalase or oxidize another organic molecule such as ethanol. Furthermore, through specialized channel proteins present on their membrane, peroxisomes release hydrogen peroxide at low levels for participation in intracellular signaling pathways.

Peroxisomes in biosynthesis

Peroxisomes in the brain and heart cells synthesize plasmalogens, a class of glycerophospholipids present in myelin sheaths.

Peroxisomes in plant cells

In addition to β-oxidation of fatty acids, peroxisomes perform many diverse functions in plants. In leaves, they are involved in photorespiration and link chloroplast and mitochondria to recover any carbon lost during photosynthesis. Germinating seedlings contain specialized peroxisomes called glyoxysomes that convert lipids to sugars using the glyoxylate cycle and generate energy for the growing plant.

Tags
PeroxisomesOrganellesLipid MetabolismAdipocytesNeuronsHepatocytesHydrogen PeroxideCatalaseRedox SignalingPlasmalogensGlycerophospholipidsPhotorespirationChloroplastMitochondriaGlyoxysomesGlyoxylate Cycle

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15.19 : Peroxisomes

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15.1 : 소포체(Endoplasmic Reticulum)

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15.2 : 부드러운 소포체

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15.3 : 분비 경로에서 ER의 역할

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15.4 : 단백질을 거친 소포체로 유도

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15.5 : ER 멤브레인의 단백질 전좌 기계

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15.6 : 동종 단백질 전좌(Cotranslational Protein Translocation)

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15.7 : RER로 단백질의 post-translational translocation

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15.8 : RER에 Single-pass transmembrane proteins 삽입

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15.9 : RER에 Multi-pass transmembrane proteins 삽입

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15.10 : ER 막에서 단백질의 꼬리 고정

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15.11 : ER 막에 단백질의 GPI 앵커링

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15.12 : RER의 단백질 변형

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15.13 : RER의 단백질 접힘 품질 검사

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15.14 : 잘못 접힌 단백질을 ER에서 내보내기

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