All terms in GO

Label Id Description
renal capsule morphogenesis GO_0072128 [The process in which the anatomical structures of the renal capsule are generated and organized. The renal capsule is the tough fibrous layer surrounding the kidney, covered in a thick layer of perinephric adipose tissue. It provides some protection from trauma and damage. During development, it comprises a single layer of flattened cells that lie just above the cortical stroma and the condensed mesenchyme of the nephrogenic zone. It is in this region that the early stages of nephron induction and formation of new generations ureteric bud branches occur, as the kidney expands.]
mitotic actomyosin contractile ring, distal actin filament layer GO_0120106 [The region of the mitotic actomyosin ring containing actin filaments and cross linkers, myosin motors, and connections to the plasma membrane through the intermediate layer. It is further from the plasma membrane than the intermediate layer which it is adjacent to.]
mesonephric capsule development GO_0061285 [The progression of the mesonephric capsule over time, from its formation to the mature structure. The mesonephric capsule is the tough fibrous layer surrounding the mesonephros, covered in a thick layer of perinephric adipose tissue.]
renal capsule development GO_0072127 [The process whose specific outcome is the progression of the renal capsule over time, from its formation to the mature structure. The renal capsule is the tough fibrous layer surrounding the kidney, covered in a thick layer of perinephric adipose tissue. It provides some protection from trauma and damage. During development, it comprises a single layer of flattened cells that lie just above the cortical stroma and the condensed mesenchyme of the nephrogenic zone. It is in this region that the early stages of nephron induction and formation of new generations ureteric bud branches occur, as the kidney expands.]
mitotic actomyosin contractile ring, intermediate layer GO_0120105 [The region of the mitotic actomyosin ring in between the proximal layer and the actin filament layer. This region contains the accessory protein network, some actin filaments and connections between the proximal layer and the actin filament layer.]
specification of mesonephric proximal tubule identity GO_0061284 [The process in which the proximal tubule of the mesonephric nephron acquires its identity.]
S-adenosyl-L-methionine:S-adenosyl-L-homocysteine antiporter activity GO_0180003 [Catalysis of the reaction: S-adenosyl-L-homocysteine(out) + S-adenosyl-L-methionine(in) = S-adenosyl-L-homocysteine(in) + S-adenosyl-L-methionine(out).]
renal zinc excretion GO_0180002 [The elimination of zinc ions from peritubular capillaries (or surrounding hemolymph in invertebrates) into the renal tubules to be incorporated subsequently into the urine.]
cyclic-di-AMP binding GO_0180001 [Binding to a cyclic di-AMP nucleotide.]
histone methyltransferase inhibitor activity GO_0180000 [Binds to and stops, prevents or reduces the activity of a histone methyltransferase.]
RNA polymerase II CTD heptapeptide repeat S5 phosphatase activity GO_0180007 [Catalysis of the reaction: RNA polymerase II large subunit CTD heptapeptide repeat--phospho-L-serine (consensus YSPTSPS)(position 5) + H2O = RNA polymerase II large subunit + phosphate.]
RNA polymerase II CTD heptapeptide repeat phosphatase activity GO_0008420 [Catalysis of the reaction: RNA polymerase II large subunit CTD heptapeptide repeat--phospho-L-serine/threonine (consensus YSPTSPS) + H2O = RNA polymerase II large subunit + phosphate.]
RNA polymerase II CTD heptapeptide repeat S2 phosphatase activity GO_0180006 [Catalysis of the reaction: RNA polymerase II large subunit CTD heptapeptide repeat--phospho-L-serine (consensus YSPTSPS)(position 2) + H2O = RNA polymerase II large subunit + phosphate.]
RNA polymerase II CTD heptapeptide repeat T4 phosphatase activity GO_0180005 [Catalysis of the reaction: RNA polymerase II large subunit CTD heptapeptide repeat--phospho-L-threonine (consensus YSPTSPS)(position 4) + H2O = RNA polymerase II large subunit + phosphate.]
RNA polymerase II CTD heptapeptide repeat Y1 phosphatase activity GO_0180004 [Catalysis of the reaction: RNA polymerase II large subunit CTD heptapeptide repeat--phospho-L-tyrosine (consensus YSPTSPS)(position 1) + H2O = RNA polymerase II large subunit + phosphate.]
broad specificity neutral L-amino acid:basic L-amino acid antiporter activity GO_0180009 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: basic L-amino acid(in) + neutral L-amino acid(out) = basic L-amino acid(in) + neutral L-amino acid(out).]
RNA polymerase II CTD heptapeptide repeat S7 phosphatase activity GO_0180008 [Catalysis of the reaction: RNA polymerase II large subunit CTD heptapeptide repeat--phospho-L-serine (consensus YSPTSPS)(position 7) + H2O = RNA polymerase II large subunit + phosphate.]
U6 snRNA 2'-O-ribose methyltransferase activity GO_0180021 [Catalysis of the reaction: S-adenosyl-L-methionine + U6 snRNA = S-adenosyl-L-homocysteine + U6 containing a 3'-terminal 2'-O-methylnucleotide + H+.]
small RNA 2'-O-methyltransferase activity GO_0090486 [Catalysis of the transfer of a methyl group from S-adenosyl-L-methionine to the oxygen atom of a nucleoside residue in a small RNA molecule. Reaction: S-adenosyl-L-methionine + small RNA = S-adenosyl-L-homocysteine + small RNA containing a 3'-terminal 2'-O-methylnucleotide.]
membrane bending activity GO_0180020 [The activity of bending or deforming a membrane. This activity can occur by multiple mechanisms including the insertion amphipathic domains into one or both leaflets.]